1.
|
Victor Yiga, Hasifa Nampala, Julius Tumwiine, Yansheng Liu,
Analysis of the Model on the Effect of Seasonal Factors on Malaria Transmission Dynamics,
2020,
2020,
1687-0042,
1,
10.1155/2020/8885558
|
|
2.
|
Felix Okoe Mettle, Prince Osei Affi, Clement Twumasi,
Modelling the Transmission Dynamics of Tuberculosis in the Ashanti Region of Ghana,
2020,
2020,
1687-708X,
1,
10.1155/2020/4513854
|
|
3.
|
D.P. Moualeu, A. Nana Yakam, S. Bowong, A. Temgoua,
Analysis of a tuberculosis model with undetected and lost-sight cases,
2016,
41,
10075704,
48,
10.1016/j.cnsns.2016.04.012
|
|
4.
|
Cristiana J. Silva, Delfim F. M. Torres,
2020,
Chapter 6,
978-3-030-49895-5,
155,
10.1007/978-3-030-49896-2_6
|
|
5.
|
Xianghong Zhang, Sanyi Tang, Qiyong Liu, Robert A. Cheke, Huaiping Zhu,
Models to assess the effects of non-identical sex ratio augmentations of Wolbachia -carrying mosquitoes on the control of dengue disease,
2018,
299,
00255564,
58,
10.1016/j.mbs.2018.03.003
|
|
6.
|
Steady Mushayabasa, Drew Posny, Jin Wang,
Modeling the intrinsic dynamics of foot-and-mouth disease,
2016,
13,
1551-0018,
425,
10.3934/mbe.2015010
|
|
7.
|
Chun Yen Chung, Hung Yuan Chung,
Computer Simulation for New Theoretical Model Constructed with Tuberculosis,
2013,
300-301,
1662-7482,
1658,
10.4028/www.scientific.net/AMM.300-301.1658
|
|
8.
|
O. Sharomi, A.B. Gumel,
Curtailing smoking dynamics: A mathematical modeling approach,
2008,
195,
00963003,
475,
10.1016/j.amc.2007.05.012
|
|
9.
|
Calistus N. Ngonghala, Gideon A. Ngwa, Miranda I. Teboh-Ewungkem,
Periodic oscillations and backward bifurcation in a model for the dynamics of malaria transmission,
2012,
240,
00255564,
45,
10.1016/j.mbs.2012.06.003
|
|
10.
|
The impact of migrant workers on the tuberculosis transmission: General models and a case study for
China,
2012,
9,
1551-0018,
785,
10.3934/mbe.2012.9.785
|
|
11.
|
Zhong-wei JIA, Xiao-wen LI, Dan FENG, Wu-chun CAO,
Transmission models of tuberculosis in heterogeneous population,
2007,
120,
0366-6999,
1360,
10.1097/00029330-200708010-00012
|
|
12.
|
RUI XU, NING BAI, XIAOHONG TIAN,
GLOBAL DYNAMICS OF A MATHEMATICAL MODEL OF TUBERCULOSIS WITH AGE-DEPENDENT LATENCY AND ACTIVE INFECTION,
2019,
27,
0218-3390,
503,
10.1142/S0218339019500207
|
|
13.
|
J Nainggolan, Sudradjat Supian, A K Supriatna, N Anggriani,
Mathematical Model Of Tuberculosis Transmission With Reccurent Infection And Vaccination,
2013,
423,
1742-6588,
012059,
10.1088/1742-6596/423/1/012059
|
|
14.
|
Parvaiz Ahmad Naik, Jian Zu, Mohammad Ghoreishi,
STABILITY ANALYSIS AND APPROXIMATE SOLUTION OF SIR EPIDEMIC MODEL WITH CROWLEY-MARTIN TYPE FUNCTIONAL RESPONSE AND HOLLING TYPE-Ⅱ TREATMENT RATE BY USING HOMOTOPY ANALYSIS METHOD,
2020,
10,
2156-907X,
1482,
10.11948/20190239
|
|
15.
|
Kazeem O. Okosun, Ouifki Rachid, Nizar Marcus,
Optimal control strategies and cost-effectiveness analysis of a malaria model,
2013,
111,
03032647,
83,
10.1016/j.biosystems.2012.09.008
|
|
16.
|
Martial Kabong Nono, Elie Bertrand Megam Ngouonkadi, Samuel Bowong, Hilaire Bertrand Fotsin,
Hopf and backward bifurcations induced by immune effectors in a cancer oncolytic virotherapy dynamics,
2020,
2195-268X,
10.1007/s40435-020-00703-1
|
|
17.
|
Ibrahim M. ELmojtaba,
Mathematical model for the dynamics of visceral leishmaniasis-malaria co-infection,
2016,
39,
01704214,
4334,
10.1002/mma.3864
|
|
18.
|
Rendani Netshikweta, Winston Garira,
A Multiscale Model for the World’s First Parasitic Disease Targeted for Eradication: Guinea Worm Disease,
2017,
2017,
1748-670X,
1,
10.1155/2017/1473287
|
|
19.
|
Arvind Kumar Misra, Rajesh Kumar Singh, Pankaj Kumar Tiwari, Subhas Khajanchi, Yun Kang,
Dynamics of algae blooming: effects of budget allocation and time delay,
2020,
100,
0924-090X,
1779,
10.1007/s11071-020-05551-4
|
|
20.
|
Yibeltal Adane Terefe,
A sex-structured model for the transmission of trichomoniasis with possible reinfection,
2020,
0889-8480,
1,
10.1080/08898480.2020.1767416
|
|
21.
|
Parimita Roy, Ranjit Kumar Upadhyay,
Assessment of rabbit hemorrhagic disease in controlling the population of red fox: A measure to preserve endangered species in Australia,
2016,
26,
1476945X,
6,
10.1016/j.ecocom.2016.01.002
|
|
22.
|
Ram Singh, Madhu Jain, Shoket Ali,
2016,
Mathematical analysis of transmission dynamics of tuberculosis with recurrence based on treatment,
978-1-4673-9939-5,
3995,
10.1109/ICEEOT.2016.7755464
|
|
23.
|
Soyoung Kim, Aurelio A. de los Reyes, Eunok Jung,
Mathematical model and intervention strategies for mitigating tuberculosis in the Philippines,
2018,
443,
00225193,
100,
10.1016/j.jtbi.2018.01.026
|
|
24.
|
J. Mushanyu, F. Nyabadza, G. Muchatibaya, P. Mafuta, G. Nhawu,
Assessing the potential impact of limited public health resources on the spread and control of typhoid,
2018,
77,
0303-6812,
647,
10.1007/s00285-018-1219-9
|
|
25.
|
Rajiv Aggarwal,
Estimating the impact of antiretroviral therapy on HIV-TB co-infection: Optimal strategy prediction,
2021,
14,
1793-5245,
2150004,
10.1142/S1793524521500042
|
|
26.
|
Gajendra Pratap Singh, Madhuri Jha, Mamtesh Singh, ,
Modeling the mechanism pathways of first line drug in Tuberculosis using Petri nets,
2020,
11,
0975-6809,
313,
10.1007/s13198-019-00940-4
|
|
27.
|
Kanica Goel, Abhishek Kumar, ,
A deterministic time-delayed SVIRS epidemic model with incidences and saturated treatment,
2020,
121,
0022-0833,
19,
10.1007/s10665-020-10037-8
|
|
28.
|
Xiaomei Feng, Zhidong Teng, Kai Wang, Fengqin Zhang,
Backward bifurcation and global stability in
an epidemic model with treatment and vaccination,
2014,
19,
1553-524X,
999,
10.3934/dcdsb.2014.19.999
|
|
29.
|
Muntaser Safan, Ahmed Ghazi,
Demographic Impact and Controllability of Malaria in an SIS Model with Proportional Fatality,
2016,
39,
0126-6705,
65,
10.1007/s40840-015-0181-6
|
|
30.
|
Rahim Taghikhani, Oluwaseun Sharomi, Abba B. Gumel,
Dynamics of a two-sex model for the population ecology of dengue mosquitoes in the presence of Wolbachia,
2020,
328,
00255564,
108426,
10.1016/j.mbs.2020.108426
|
|
31.
|
Cristiana J. Silva, Delfim F. M. Torres,
A TB-HIV/AIDS coinfection model and optimal control treatment,
2015,
35,
1553-5231,
4639,
10.3934/dcds.2015.35.4639
|
|
32.
|
Ankur Jain, Joydip Dhar, Vijay Gupta,
Rumor model on homogeneous social network incorporating delay in expert intervention and government action,
2020,
84,
10075704,
105189,
10.1016/j.cnsns.2020.105189
|
|
33.
|
Abba B. Gumel, Ahmed Abdelrazec, Kamaldeen Okuneye,
Mathematical analysis of a weather-driven model for the population ecology of mosquitoes,
2017,
15,
1551-0018,
57,
10.3934/mbe.2018003
|
|
34.
|
Haileyesus Tessema Alemneh, Oluwole Daniel Makinde, David Mwangi Theuri,
Ecoepidemiological Model and Analysis of MSV Disease Transmission Dynamics in Maize Plant,
2019,
2019,
0161-1712,
1,
10.1155/2019/7965232
|
|
35.
|
Xueyong Zhou, Jingan Cui,
Analysis of stability and bifurcation for an SEIV epidemic model with vaccination and nonlinear incidence rate,
2011,
63,
0924-090X,
639,
10.1007/s11071-010-9826-z
|
|
36.
|
E. Takoutsing, S. Bowong, D. Yemele, A. Temgoua,
DYNAMICS OF AN INTRA-HOST MODEL OF MALARIA WITH A CONSTANT DRUG EFFICIENCY,
2019,
9,
2156-907X,
2037,
10.11948/20160266
|
|
37.
|
Can Chen, Yanni Xiao,
Modeling Saturated Diagnosis and Vaccination in Reducing HIV/AIDS Infection,
2014,
2014,
1085-3375,
1,
10.1155/2014/414383
|
|
38.
|
JULIET NAKAKAWA, JOSEPH Y. T. MUGISHA, MICHAEL W. SHAW, ELDAD KARAMURA,
A MATHEMATICAL MODEL FOR THE DYNAMICS OF BANANA XANTHOMONAS WILT WITH VERTICAL TRANSMISSION AND INFLORESCENCE INFECTION,
2016,
24,
0218-3390,
147,
10.1142/S021833901650008X
|
|
39.
|
ALIYA A. ALSALEH, ABBA B. GUMEL,
DYNAMICS ANALYSIS OF A VACCINATION MODEL FOR HPV TRANSMISSION,
2014,
22,
0218-3390,
555,
10.1142/S0218339014500211
|
|
40.
|
Mohammad A. Safi, Abba B. Gumel,
Dynamics of a model with quarantine-adjusted incidence and quarantine of susceptible individuals,
2013,
399,
0022247X,
565,
10.1016/j.jmaa.2012.10.015
|
|
41.
|
Atena Ghasemabadi, Nahid Soltanian,
Qualitative properties of mathematical model of English language education,
2021,
2021,
1687-1847,
10.1186/s13662-020-03180-0
|
|
42.
|
Hailay Weldegiorgis Berhe, Oluwole Daniel Makinde, David Mwangi Theuri,
Parameter Estimation and Sensitivity Analysis of Dysentery Diarrhea Epidemic Model,
2019,
2019,
1110-757X,
1,
10.1155/2019/8465747
|
|
43.
|
Irina Petrova, Dmitry Gromov, V. Volpert, F. Syomin,
Sensitivity analysis of the model of tuberculosis,
2020,
31,
2271-2097,
03004,
10.1051/itmconf/20203103004
|
|
44.
|
Nicolas Bacaër, Rachid Ouifki, Carel Pretorius, Robin Wood, Brian Williams,
Modeling the joint epidemics of TB and HIV in a South African township,
2008,
57,
0303-6812,
557,
10.1007/s00285-008-0177-z
|
|
45.
|
Indrajit Ghosh, Sk Shahid Nadim, Joydev Chattopadhyay,
Zoonotic MERS-CoV transmission: modeling, backward bifurcation and optimal control analysis,
2021,
103,
0924-090X,
2973,
10.1007/s11071-021-06266-w
|
|
46.
|
F. Capone, V. De Cataldis, R. De Luca,
On the nonlinear stability of an epidemic SEIR reaction-diffusion model,
2013,
62,
0035-5038,
161,
10.1007/s11587-013-0151-y
|
|
47.
|
Elena Almaraz, Antonio Gómez‐Corral,
Number of infections suffered by a focal individual in a two‐strain SIS model with partial cross‐immunity,
2019,
42,
0170-4214,
4318,
10.1002/mma.5652
|
|
48.
|
Haileyesus Tessema Alemneh,
A co-infection model of dengue and leptospirosis diseases,
2020,
2020,
1687-1847,
10.1186/s13662-020-03126-6
|
|
49.
|
GEISER VILLAVICENCIO-PULIDO, IGNACIO BARRADAS, LUNA BEATRIZ,
AN EPIDEMIOLOGICAL MODEL WITH MULTIPLE ENDEMIC STATES,
2015,
23,
0218-3390,
S17,
10.1142/S0218339015400021
|
|
50.
|
A. Omame, C. U. Nnanna, S. C. Inyama,
Optimal Control and Cost-Effectiveness Analysis of an HPV–Chlamydia trachomatis Co-infection Model,
2021,
0001-5342,
10.1007/s10441-020-09401-z
|
|
51.
|
Swarnali Sharma, G. P. Samanta,
Analysis of a two prey one predator system with disease in the first prey population,
2015,
3,
2195-268X,
210,
10.1007/s40435-014-0107-4
|
|
52.
|
A. Feukouo Fossi, J. Lubuma, C. Tadmon, B. Tsanou,
Mathematical modeling and nonstandard finite difference scheme analysis for the environmental and spillover transmissions of Avian Influenza A model,
2021,
1468-9367,
1,
10.1080/14689367.2021.1872503
|
|
53.
|
Liming Cai, Xuezhi Li, Necibe Tuncer, Maia Martcheva, Abid Ali Lashari,
Optimal control of a malaria model with asymptomatic class and superinfection,
2017,
288,
00255564,
94,
10.1016/j.mbs.2017.03.003
|
|
54.
|
Bruno Buonomo, Rossella Della Marca,
Oscillations and hysteresis in an epidemic model with information-dependent imperfect vaccination,
2019,
162,
03784754,
97,
10.1016/j.matcom.2019.01.005
|
|
55.
|
Mohammad A. Safi, Abba B. Gumel,
Dynamics analysis of a quarantine model in two patches,
2015,
38,
01704214,
349,
10.1002/mma.3072
|
|
56.
|
Baojun Song, Zhilan Feng, Gerardo Chowell,
From the guest editors,
2013,
10,
1551-0018,
10.3934/mbe.2013.10.5i
|
|
57.
|
Subhas Khajanchi, Dhiraj Kumar Das, Tapan Kumar Kar,
Dynamics of tuberculosis transmission with exogenous reinfections and endogenous reactivation,
2018,
497,
03784371,
52,
10.1016/j.physa.2018.01.014
|
|
58.
|
Semu M. Kassa, John B.H. Njagarah, Yibeltal A. Terefe,
Analysis of the mitigation strategies for COVID-19: From mathematical modelling perspective,
2020,
138,
09600779,
109968,
10.1016/j.chaos.2020.109968
|
|
59.
|
John M. Kitayimbwa, Joseph Y. T. Mugisha, Roberto A. Saenz,
The role of backward mutations on the within-host dynamics of HIV-1,
2013,
67,
0303-6812,
1111,
10.1007/s00285-012-0581-2
|
|
60.
|
Li-Ming Cai, Zhaoqing Li, Xinyu Song,
Global analysis of an epidemic model with vaccination,
2018,
57,
1598-5865,
605,
10.1007/s12190-017-1124-1
|
|
61.
|
M. Fatimah, D. Aldila, B. D. Handari,
Backward bifurcation arises from the smoking transmission model considering media campaign,
2021,
1722,
1742-6588,
012004,
10.1088/1742-6596/1722/1/012004
|
|
62.
|
Xueyong Zhou, Xiangyun Shi, Jingan Cui,
Stability and backward bifurcation on a cholera epidemic model with saturated recovery rate,
2017,
40,
01704214,
1288,
10.1002/mma.4053
|
|
63.
|
M.A. Masud, Byul Nim Kim, Yongkuk Kim,
Optimal control problems of mosquito-borne disease subject to changes in feeding behavior of Aedes mosquitoes,
2017,
156-157,
03032647,
23,
10.1016/j.biosystems.2017.03.005
|
|
64.
|
F.B. Agusto, M.A. Khan,
Optimal control strategies for dengue transmission in pakistan,
2018,
305,
00255564,
102,
10.1016/j.mbs.2018.09.007
|
|
65.
|
Flavia Remo, Livingstone S. Luboobi, Isambi Sailon Mabalawata, Betty K. Nannyonga,
A mathematical model for the dynamics and MCMC analysis of tomato bacterial wilt disease,
2018,
11,
1793-5245,
1850001,
10.1142/S1793524518500018
|
|
66.
|
Eric Avila-Vales, Bruno Buonomo,
Analysis of a mosquito-borne disease transmission model with vector stages and nonlinear forces of infection,
2015,
64,
0035-5038,
377,
10.1007/s11587-015-0245-9
|
|
67.
|
Dipo Aldila, Nadhira Azizah, Bevina D. Handari,
Optimal control problem arises from illegal poaching of southern white rhino mathematical model,
2020,
2020,
1687-1847,
10.1186/s13662-020-03062-5
|
|
68.
|
Songnian Zhao, Yan Kuang, Chih-Hang Wu, David Ben-Arieh, Marcelo Ramalho-Ortigao, Kaiming Bi,
Zoonotic visceral leishmaniasis transmission: modeling, backward bifurcation, and optimal control,
2016,
73,
0303-6812,
1525,
10.1007/s00285-016-0999-z
|
|
69.
|
G.G. Kolaye, S. Bowong, R. Houe, M.A. Aziz-Alaoui, M. Cadivel,
Mathematical assessment of the role of environmental factors on the dynamical transmission of cholera,
2019,
67,
10075704,
203,
10.1016/j.cnsns.2018.06.023
|
|
70.
|
Sarah F. Ackley, Robyn S. Lee, Lee Worden, Erin Zwick, Travis C. Porco, Marcel A. Behr, Caitlin S. Pepperell,
Multiple exposures, reinfection and risk of progression to active tuberculosis,
2019,
6,
2054-5703,
180999,
10.1098/rsos.180999
|
|
71.
|
Wenjing Zhang,
Modeling and Analysis of the Multiannual Cholera Outbreaks with Host-Pathogen Encounters,
2020,
30,
0218-1274,
2050120,
10.1142/S0218127420501205
|
|
72.
|
Kamaldeen Okuneye, Abba B. Gumel,
Analysis of a temperature- and rainfall-dependent model for malaria transmission dynamics,
2017,
287,
00255564,
72,
10.1016/j.mbs.2016.03.013
|
|
73.
|
Xinqi Xie, Junling Ma, P. van den Driessche,
Backward bifurcation in within-host HIV models,
2021,
00255564,
108569,
10.1016/j.mbs.2021.108569
|
|
74.
|
Ágnes Bodó, Péter L. Simon,
Analytic Study of Bifurcations of the Pairwise Model for SIS Epidemic Propagation on an Adaptive Network,
2020,
28,
0971-3514,
807,
10.1007/s12591-017-0348-8
|
|
75.
|
Abhishek Kumar, ,
Effects of Nonmonotonic Functional Responses on a Disease Transmission Model: Modeling and Simulation,
2021,
2194-6701,
10.1007/s40304-020-00217-4
|
|
76.
|
Steady Mushayabasa, Theresia Marijani, Mhosisi Masocha,
Dynamical analysis and control strategies in modeling anthrax,
2017,
36,
0101-8205,
1333,
10.1007/s40314-015-0297-1
|
|
77.
|
A. O. Egonmwan, D. Okuonghae,
Mathematical analysis of a tuberculosis model with imperfect vaccine,
2019,
12,
1793-5245,
1950073,
10.1142/S1793524519500736
|
|
78.
|
Bruno Buonomo, Deborah Lacitignola,
On the dynamics of an SEIR epidemic model with a convex incidence rate,
2008,
57,
0035-5038,
261,
10.1007/s11587-008-0039-4
|
|
79.
|
Sunita Gakkhar, Nareshkumar Chavda,
A dynamical model for HIV–TB co-infection,
2012,
218,
00963003,
9261,
10.1016/j.amc.2012.03.004
|
|
80.
|
J. Mushanyu, F. Nyabadza, G. Muchatibaya, A. G. R. Stewart,
On the Role of Imitation on Adolescence Methamphetamine Abuse Dynamics,
2017,
65,
0001-5342,
37,
10.1007/s10441-016-9302-3
|
|
81.
|
Sutawas Janreung, Wirawan Chinviriyasit, Settapat Chinviriyasit,
Mathematical evaluation of the role of cross immunity and nonlinear incidence rate on the transmission dynamics of two dengue serotypes,
2020,
2020,
1687-1847,
10.1186/s13662-020-02585-1
|
|
82.
|
Dipo Aldila, Bevina D Handari,
Effect of Healthy Life Campaigns on Controlling Obesity Transmission: A Mathematical Study,
2021,
1747,
1742-6588,
012003,
10.1088/1742-6596/1747/1/012003
|
|
83.
|
S. Mushayabasa, C.P. Bhunu, Robert J. Smith?,
Assessing the impact of educational campaigns on controlling HCV among women in prison settings,
2011,
10075704,
10.1016/j.cnsns.2011.08.024
|
|
84.
|
Epidemic spread of influenza viruses: The impact of transient populations on disease dynamics,
2011,
8,
1551-0018,
199,
10.3934/mbe.2011.8.199
|
|
85.
|
Pariyaporn Roop-O, Wirawan Chinviriyasit, Settapat Chinviriyasit,
The effect of incidence function in backward bifurcation for malaria model with temporary immunity,
2015,
265,
00255564,
47,
10.1016/j.mbs.2015.04.008
|
|
86.
|
Emmanuelina L. Kateme, Jean M. Tchuenche, Senelani D. Hove-Musekwa,
HIV/AIDS Dynamics with Three Control Strategies: The Role of Incidence Function,
2012,
2012,
2090-5572,
1,
10.5402/2012/864795
|
|
87.
|
Ana P. Lemos-Paião, Cristiana J. Silva, Delfim F.M. Torres,
A New Compartmental Epidemiological Model for COVID-19 with a Case Study of Portugal,
2020,
44,
1476945X,
100885,
10.1016/j.ecocom.2020.100885
|
|
88.
|
Evans Otieno Omondi, Titus Okello Orwa, Farai Nyabadza,
Application of optimal control to the onchocerciasis transmission model with treatment,
2018,
297,
00255564,
43,
10.1016/j.mbs.2017.11.009
|
|
89.
|
Hanl Lee, Angelyn Lao,
Transmission dynamics and control strategies assessment of avian influenza A (H5N6) in the Philippines,
2018,
3,
24680427,
35,
10.1016/j.idm.2018.03.004
|
|
90.
|
Salihu S. Musa, Shi Zhao, Daozhou Gao, Qianying Lin, Gerardo Chowell, Daihai He,
Mechanistic modelling of the large-scale Lassa fever epidemics in Nigeria from 2016 to 2019,
2020,
493,
00225193,
110209,
10.1016/j.jtbi.2020.110209
|
|
91.
|
Mei Bai, Lishun Ren,
An SEIV Epidemic Model for Childhood Diseases with Partial Permanent Immunity,
2015,
2015,
1748-670X,
1,
10.1155/2015/420952
|
|
92.
|
Attila Dénes, Abba B. Gumel,
Modeling the impact of quarantine during an outbreak of Ebola virus disease,
2019,
4,
24680427,
12,
10.1016/j.idm.2019.01.003
|
|
93.
|
Hai-Feng Huo, Ming-Xuan Zou,
Modelling effects of treatment at home on tuberculosis transmission dynamics,
2016,
40,
0307904X,
9474,
10.1016/j.apm.2016.06.029
|
|
94.
|
SHIKHA SINGH, J. B. SHUKLA, PEEYUSH CHANDRA,
MATHEMATICAL MODELING AND ANALYSIS OF THE SPREAD OF CARRIER DEPENDENT INFECTIOUS DISEASES: EFFECTS OF CUMULATIVE DENSITY OF ENVIRONMENTAL FACTORS,
2009,
02,
1793-5245,
213,
10.1142/S1793524509000613
|
|
95.
|
Ranjit Kumar Upadhyay, Prerna Singh,
Modeling and control of computer virus attack on a targeted network,
2020,
538,
03784371,
122617,
10.1016/j.physa.2019.122617
|
|
96.
|
A. S. Hassan, S. M. Garba, A. B. Gumel, J. M.-S. Lubuma,
Dynamics ofMycobacteriumandbovine tuberculosisin a Human-Buffalo Population,
2014,
2014,
1748-670X,
1,
10.1155/2014/912306
|
|
97.
|
Doreen Mbabazi Ssebuliba, Rachid Ouifki,
Effect of mixed infection on TB dynamics,
2019,
12,
1793-5245,
1950061,
10.1142/S179352451950061X
|
|
98.
|
Swarnali Sharma, G.P. Samanta,
DYNAMICAL BEHAVIOUR OF A DRINKING EPIDEMIC MODEL,
2013,
31,
1598-5857,
747,
10.14317/jami.2013.747
|
|
99.
|
Abhishek Kumar, ,
Stability of a delayed SIR epidemic model by introducing two explicit treatment classes along with nonlinear incidence rate and Holling type treatment,
2019,
38,
2238-3603,
10.1007/s40314-019-0866-9
|
|
100.
|
Cristiana J. Silva, Delfim F. M. Torres,
Modeling TB-HIV Syndemic and Treatment,
2014,
2014,
1110-757X,
1,
10.1155/2014/248407
|
|
101.
|
Abhishek Kumar, ,
Stability of a Time Delayed SIR Epidemic Model Along with Nonlinear Incidence Rate and Holling Type-II Treatment Rate,
2018,
15,
0219-8762,
1850055,
10.1142/S021987621850055X
|
|
102.
|
Arti Mishra, Sunita Gakkhar,
Stage-Structured Transmission Model Incorporating Secondary Dengue Infection,
2017,
0971-3514,
10.1007/s12591-017-0387-1
|
|
103.
|
Kenichi W. Okamoto, David M. Post, David A. Vasseur, Paul E. Turner,
Managing the emergence of pathogen resistance via spatially targeted antimicrobial use,
2018,
11,
17524571,
1822,
10.1111/eva.12683
|
|
104.
|
Swarnali Sharma, G. P. Samanta,
Stability analysis and optimal control of an epidemic model with vaccination,
2015,
08,
1793-5245,
1550030,
10.1142/S1793524515500308
|
|
105.
|
Rajiv Aggarwal, Tamas Kovacs,
Assessing the Effects of Holling Type-II Treatment Rate on HIV-TB Co-infection,
2021,
69,
0001-5342,
1,
10.1007/s10441-020-09385-w
|
|
106.
|
Caterina Vitale, Alex Best,
The Impact of Selective Predation on Host–Parasite SIS Dynamics,
2019,
81,
0092-8240,
2510,
10.1007/s11538-019-00616-x
|
|
107.
|
David J. Gerberry,
Practical aspects of backward bifurcation in a mathematical model for tuberculosis,
2016,
388,
00225193,
15,
10.1016/j.jtbi.2015.10.003
|
|
108.
|
J. Mushanyu, F. Nyabadza, P. Mafuta, E. T. Ngarakana-Gwasira,
Modelling Gender Differences in Drug Abuse Epidemics,
2018,
4,
2349-5103,
10.1007/s40819-017-0477-3
|
|
109.
|
Fred Brauer, Carlos Castillo-Chavez, Zhilan Feng,
2019,
Chapter 16,
978-1-4939-9826-5,
507,
10.1007/978-1-4939-9828-9_16
|
|
110.
|
James M. Trauer, Justin T. Denholm, Emma S. McBryde,
Construction of a mathematical model for tuberculosis transmission in highly endemic regions of the Asia-pacific,
2014,
358,
00225193,
74,
10.1016/j.jtbi.2014.05.023
|
|
111.
|
Muntaser Safan, Mirjam Kretzschmar, Karl P. Hadeler,
Vaccination based control of infections in SIRS models with reinfection: special reference to pertussis,
2013,
67,
0303-6812,
1083,
10.1007/s00285-012-0582-1
|
|
112.
|
Hongyong Zhao, Liping Wang, Sergio Muniz Oliva, Huaiping Zhu,
Modeling and Dynamics Analysis of Zika Transmission with Limited Medical Resources,
2020,
82,
0092-8240,
10.1007/s11538-020-00776-1
|
|
113.
|
Xiaoyu Weng, Longxing Qi, Pan Tang,
Research on college students’ physical exercise trend based on compartment model,
2021,
180,
03784754,
24,
10.1016/j.matcom.2020.08.016
|
|
114.
|
Haoxiang Tang, Mingtao Li, Xiangyu Yan, Zuhong Lu, Zhongwei Jia,
Modeling the Dynamics of Drug Spreading in China,
2021,
18,
1660-4601,
288,
10.3390/ijerph18010288
|
|
115.
|
Junli Liu, Tailei Zhang,
Global stability for a tuberculosis model,
2011,
54,
08957177,
836,
10.1016/j.mcm.2011.03.033
|
|
116.
|
Dongxue Yan, Hui Cao,
The global dynamics for an age-structured tuberculosis transmission model with the exponential progression rate,
2019,
75,
0307904X,
769,
10.1016/j.apm.2019.07.003
|
|
117.
|
C.P. Bhunu,
Mathematical analysis of a three-strain tuberculosis transmission model,
2011,
35,
0307904X,
4647,
10.1016/j.apm.2011.03.037
|
|
118.
|
Ebraheem O. Alzahrani, Wisal Ahmad, Muhammad Altaf Khan, Sharaf J. Malebary,
Optimal Control Strategies of Zika Virus Model with Mutant,
2021,
93,
10075704,
105532,
10.1016/j.cnsns.2020.105532
|
|
119.
|
Li-Ming Cai, Xue-Zhi Li, Zhaoqiang Li,
Dynamical behavior of an epidemic model for a vector-borne disease with direct transmission,
2013,
46,
09600779,
54,
10.1016/j.chaos.2012.11.002
|
|
120.
|
Da-peng Gao, Nan-jing Huang,
Optimal control analysis of a tuberculosis model,
2018,
58,
0307904X,
47,
10.1016/j.apm.2017.12.027
|
|
121.
|
Christinah Chiyaka, Zindoga Mukandavire, Prasenjit Das, Farai Nyabadza, Senelani D. Hove-Musekwa, Henry Mwambi,
Theoretical analysis of mixed Plasmodium malariae and Plasmodium falciparum infections with partial cross-immunity,
2010,
263,
00225193,
169,
10.1016/j.jtbi.2009.10.032
|
|
122.
|
Ágnes Bodó, Péter L. Simon,
Transcritical bifurcation yielding global stability for network processes,
2020,
196,
0362546X,
111808,
10.1016/j.na.2020.111808
|
|
123.
|
Anupam Khatua, Tapan Kumar Kar,
Impacts of Media Awareness on a Stage Structured Epidemic Model,
2020,
6,
2349-5103,
10.1007/s40819-020-00904-4
|
|
124.
|
Shakir Bilal, Rocio Caja Rivera, Anuj Mubayi, Edwin Michael,
Complexity and critical thresholds in the dynamics of visceral leishmaniasis,
2020,
7,
2054-5703,
200904,
10.1098/rsos.200904
|
|
125.
|
Chun Yen Chung, Hung Yuan Chung, Wen Tsai Sung,
Mathematical Models for the Dynamics Simulation of Tuberculosis,
2013,
418,
1662-7482,
265,
10.4028/www.scientific.net/AMM.418.265
|
|
126.
|
Isaac Mwangi Wangari, Markos G. Tsipouras,
Condition for Global Stability for a SEIR Model Incorporating Exogenous Reinfection and Primary Infection Mechanisms,
2020,
2020,
1748-6718,
1,
10.1155/2020/9435819
|
|
127.
|
Robert Smith, Kazeem Oare Okosun,
Optimal control analysis of malaria–schistosomiasis co-infection dynamics,
2016,
13,
1551-0018,
2,
10.3934/mbe.2017024
|
|
128.
|
QUALITATIVE AND BIFURCATION ANALYSIS USING A COMPUTER VIRUS MODEL WITH A SATURATED RECOVERY FUNCTION,
2012,
2,
2156-907X,
305,
10.11948/2012022
|
|
129.
|
Semu Mitiku Kassa, Aziz Ouhinou,
The impact of self-protective measures in the optimal interventions for controlling infectious diseases of human population,
2015,
70,
0303-6812,
213,
10.1007/s00285-014-0761-3
|
|
130.
|
E. Lungu, T. J. Massaro, E. Ndelwa, N. Ainea, S. Chibaya, N. J. Malunguza,
Mathematical Modeling of the HIV/Kaposi’s Sarcoma Coinfection Dynamics in Areas of High HIV Prevalence,
2013,
2013,
1748-670X,
1,
10.1155/2013/753424
|
|
131.
|
Betty Nannyonga, David J. T. Sumpter, Delmiro Fernandez-Reyes,
Modelling optimal allocation of resources in the context of an incurable disease,
2017,
12,
1932-6203,
e0172401,
10.1371/journal.pone.0172401
|
|
132.
|
F.B. Agusto, M.C.A. Leite,
Optimal control and cost-effective analysis of the 2017 meningitis outbreak in Nigeria,
2019,
4,
24680427,
161,
10.1016/j.idm.2019.05.003
|
|
133.
|
Fatima Sulayman, Farah Aini Abdullah, Mohd Hafiz Mohd,
An SVEIRE Model of Tuberculosis to Assess the Effect of an Imperfect Vaccine and Other Exogenous Factors,
2021,
9,
2227-7390,
327,
10.3390/math9040327
|
|
134.
|
E.H. Elbasha, C.N. Podder, A.B. Gumel,
Analyzing the dynamics of an SIRS vaccination model with waning natural and vaccine-induced immunity,
2011,
12,
14681218,
2692,
10.1016/j.nonrwa.2011.03.015
|
|
135.
|
Abhishek Kumar, Manoj Kumar, ,
A study on the stability behavior of an epidemic model with ratio-dependent incidence and saturated treatment,
2020,
139,
1431-7613,
225,
10.1007/s12064-020-00314-6
|
|
136.
|
Hai-Feng Huo, Shuang-Lin Jing, Xun-Yang Wang, Hong Xiang,
Modeling and analysis of a H1N1 model with relapse and effect of Twitter,
2020,
560,
03784371,
125136,
10.1016/j.physa.2020.125136
|
|
137.
|
Jie Lou, Wen Du, Baojun Song,
Different types of backward bifurcations due to density-dependent treatments,
2013,
10,
1551-0018,
1651,
10.3934/mbe.2013.10.1651
|
|
138.
|
Dhiraj Kumar Das, Subhas Khajanchi, T.K. Kar,
Transmission dynamics of tuberculosis with multiple re-infections,
2020,
130,
09600779,
109450,
10.1016/j.chaos.2019.109450
|
|
139.
|
E. Bonyah, S. Ogunlade, S.D. Purohit, Jagdev Singh,
Modelling Cultural Hereditary Transmission: Insight Through Optimal Control,
2021,
45,
1476945X,
100890,
10.1016/j.ecocom.2020.100890
|
|
140.
|
BiBi Fatima, Manar A. Alqudah, Gul Zaman, Fahd Jarad, Thabet Abdeljawad,
Modeling the Transmission Dynamics of Middle Eastern Respiratory Syndrome Coronavirus with the Impact of Media Coverage,
2021,
22113797,
104053,
10.1016/j.rinp.2021.104053
|
|
141.
|
Farinaz Forouzannia, Abba B. Gumel,
Mathematical analysis of an age-structured model for malaria transmission dynamics,
2014,
247,
00255564,
80,
10.1016/j.mbs.2013.10.011
|
|
142.
|
Shenghu Xu,
Dynamics of a general prey–predator model with prey-stage structure and diffusive effects,
2014,
68,
08981221,
405,
10.1016/j.camwa.2014.06.016
|
|
143.
|
Preeti Dubey, Balram Dubey, Uma S. Dubey,
2016,
Chapter 4,
978-81-322-3638-2,
63,
10.1007/978-81-322-3640-5_4
|
|
144.
|
A. Omame, R. A. Umana, D. Okuonghae, S. C. Inyama,
Mathematical analysis of a two-sex Human Papillomavirus (HPV) model,
2018,
11,
1793-5245,
1850092,
10.1142/S1793524518500924
|
|
145.
|
F.B. Agusto,
Mathematical model of Ebola transmission dynamics with relapse and reinfection,
2017,
283,
00255564,
48,
10.1016/j.mbs.2016.11.002
|
|
146.
|
Hui Cao, Yicang Zhou, Baojun Song,
Complex Dynamics of Discrete SEIS Models with Simple Demography,
2011,
2011,
1026-0226,
1,
10.1155/2011/653937
|
|
147.
|
Anwarud Din, Yongjin Li, Qi Liu,
Viral dynamics and control of hepatitis B virus (HBV) using an epidemic model,
2020,
59,
11100168,
667,
10.1016/j.aej.2020.01.034
|
|
148.
|
Geiser Villavicencio Pulido, Ignacio Barradas, Beatriz Luna,
Backward bifurcation for some general recovery functions,
2017,
40,
01704214,
1505,
10.1002/mma.4074
|
|
149.
|
Anuj Kumar, Prashant K. Srivastava, Yasuhiro Takeuchi,
Modeling the role of information and limited optimal treatment on disease prevalence,
2017,
414,
00225193,
103,
10.1016/j.jtbi.2016.11.016
|
|
150.
|
A. A. Elsadany, A. E. Matouk, A. G. Abdelwahab, H. S. Abdallah,
Dynamical analysis, linear feedback control and synchronization of a generalized Lotka-Volterra system,
2018,
6,
2195-268X,
328,
10.1007/s40435-016-0299-x
|
|
151.
|
E. Omondi, R. Mbogo, L. Luboobi,
Mathematical Analysis of Sex-Structured Population Model of HIV Infection in Kenya,
2018,
5,
23737867,
10.30707/LiB5.1Omondi
|
|
152.
|
David Greenhalgh, Martin Griffiths,
Dynamic phenomena arising from an extended Core Group model,
2009,
221,
00255564,
136,
10.1016/j.mbs.2009.08.003
|
|
153.
|
Titus Okello Orwa, Rachel Waema Mbogo, Livingstone Serwadda Luboobi,
Uncertainty and Sensitivity Analysis Applied to an In-Host Malaria Model with Multiple Vaccine Antigens,
2019,
5,
2349-5103,
10.1007/s40819-019-0658-3
|
|
154.
|
Soyoung Kim, Aurelio A. de los Reyes V, Eunok Jung, David Gerberry,
Country-specific intervention strategies for top three TB burden countries using mathematical model,
2020,
15,
1932-6203,
e0230964,
10.1371/journal.pone.0230964
|
|
155.
|
E.T. Ngarakana-Gwasira, C.P. Bhunu, M. Masocha, E. Mashonjowa,
Transmission dynamics of schistosomiasis in Zimbabwe: A mathematical and GIS Approach,
2016,
35,
10075704,
137,
10.1016/j.cnsns.2015.11.005
|
|
156.
|
P. MOUOFO TCHINDA, JEAN JULES TEWA, BOULECHARD MEWOLI, SAMUEL BOWONG,
A THEORETICAL ASSESSMENT OF THE EFFECTS OF DISTRIBUTED DELAY ON THE TRANSMISSION DYNAMICS OF HEPATITIS B,
2015,
23,
0218-3390,
423,
10.1142/S0218339015500229
|
|
157.
|
C. P. Bhunu, W. Garira, G. Magombedze,
Mathematical Analysis of a Two Strain HIV/AIDS Model with Antiretroviral Treatment,
2009,
57,
0001-5342,
361,
10.1007/s10441-009-9080-2
|
|
158.
|
S.M. Garba, A.B. Gumel, J.M.-S. Lubuma,
Dynamically-consistent non-standard finite difference method for an epidemic model,
2011,
53,
08957177,
131,
10.1016/j.mcm.2010.07.026
|
|
159.
|
Yuan Liu, Yan-Yong Zhao,
The Spread Behavior Analysis of a SIQR Epidemic Model under the Small World Network Environment,
2019,
1267,
1742-6588,
012042,
10.1088/1742-6596/1267/1/012042
|
|
160.
|
A. Mhlanga, C. P. Bhunu,
Modelling the Effects of Early Sexual Debut on the Transmission Dynamics of HSV-2,
2019,
0971-3514,
10.1007/s12591-019-00487-7
|
|
161.
|
N. J. Malunguza, S. D. Hove-Musekwa, S. Dube, Z. Mukandavire,
Dynamical properties and thresholds of an HIV model with super-infection,
2016,
1477-8599,
dqw014,
10.1093/imammb/dqw014
|
|
162.
|
Aristide G. Lambura, Gasper G. Mwanga, Livingstone Luboobi, Dmitry Kuznetsov,
Mathematical Model for Optimal Control of Soil-Transmitted Helminth Infection,
2020,
2020,
1748-670X,
1,
10.1155/2020/6721919
|
|
163.
|
A.B. Gumel,
Causes of backward bifurcations in some epidemiological models,
2012,
395,
0022247X,
355,
10.1016/j.jmaa.2012.04.077
|
|
164.
|
Rocio Caja Rivera, Ignacio Barradas,
Vector Preference Annihilates Backward Bifurcation and Reduces Endemicity,
2019,
81,
0092-8240,
4447,
10.1007/s11538-018-00561-1
|
|
165.
|
Arvind Kumar Misra, Rajanish Kumar Rai,
Impacts of TV and radio advertisements on the dynamics of an infectious disease: A modeling study,
2019,
42,
0170-4214,
1262,
10.1002/mma.5438
|
|
166.
|
Schehrazad Selmane,
2010,
Chapter 7,
978-3-642-12188-3,
72,
10.1007/978-3-642-12189-0_7
|
|
167.
|
Yimin Du, Jianhong Wu, Jane M. Heffernan,
A simple in-host model for Mycobacterium tuberculosis that captures all infection outcomes,
2017,
24,
0889-8480,
37,
10.1080/08898480.2015.1054220
|
|
168.
|
Isaac Mwangi Wangari, Stephen Davis, Lewi Stone,
Backward bifurcation in epidemic models: Problems arising with aggregated bifurcation parameters,
2016,
40,
0307904X,
1669,
10.1016/j.apm.2015.07.022
|
|
169.
|
Ran Zhang, Dan Li, Shengqiang Liu,
GLOBAL ANALYSIS OF AN AGE-STRUCTURED SEIR MODEL WITH IMMIGRATION OF POPULATION AND NONLINEAR INCIDENCE RATE,
2019,
9,
2156-907X,
1470,
10.11948/2156-907X.20180281
|
|
170.
|
Carlos Castillo-Chavez, Sunmi Lee,
2015,
Chapter 85,
978-3-540-70528-4,
427,
10.1007/978-3-540-70529-1_85
|
|
171.
|
Eduardo Ibargüen-Mondragón, Lourdes Esteva,
On the interactions of sensitive and resistant Mycobacterium tuberculosis to antibiotics,
2013,
246,
00255564,
84,
10.1016/j.mbs.2013.08.005
|
|
172.
|
Govind Prasad Sahu, Joydip Dhar,
Dynamics of an SEQIHRS epidemic model with media coverage, quarantine and isolation in a community with pre-existing immunity,
2015,
421,
0022247X,
1651,
10.1016/j.jmaa.2014.08.019
|
|
173.
|
D.P. Moualeu, S. Bowong, J.J. Tewa, Y. Emvudu,
Analysis of The Impact of Diabetes on The Dynamical Transmission of Tuberculosis,
2012,
7,
0973-5348,
117,
10.1051/mmnp/20127309
|
|
174.
|
Calistus N. Ngonghala, Miranda I. Teboh-Ewungkem, Gideon A. Ngwa,
Observance of period-doubling bifurcation and chaos in an autonomous ODE model for malaria with vector demography,
2016,
9,
1874-1738,
337,
10.1007/s12080-016-0293-0
|
|
175.
|
M.A. Khan, Syed Wasim Shah, Saif Ullah, J.F. Gómez-Aguilar,
A dynamical model of asymptomatic carrier zika virus with optimal control strategies,
2019,
50,
14681218,
144,
10.1016/j.nonrwa.2019.04.006
|
|
176.
|
Clara Prats, Cristina Montañola-Sales, Joan F. Gilabert-Navarro, Joaquim Valls, Josep Casanovas-Garcia, Cristina Vilaplana, Pere-Joan Cardona, Daniel López,
Individual-Based Modeling of Tuberculosis in a User-Friendly Interface: Understanding the Epidemiological Role of Population Heterogeneity in a City,
2016,
6,
1664-302X,
10.3389/fmicb.2015.01564
|
|
177.
|
Hailay Weldegiorgis Berhe, Oluwole Daniel Makinde, David Mwangi Theuri,
Modelling the dynamics of direct and pathogens-induced dysentery diarrhoea epidemic with controls,
2019,
13,
1751-3758,
192,
10.1080/17513758.2019.1588400
|
|
178.
|
Theresia Shirima Sabini, Jacob Ismail Irunde, Dmitry Kuznetsov,
Modeling the Transmission Dynamics of Bovine Tuberculosis,
2020,
2020,
0161-1712,
1,
10.1155/2020/7424075
|
|
179.
|
Sk Shahid Nadim, Indrajit Ghosh, Joydev Chattopadhyay,
Global Dynamics of a Vector-Borne Disease Model with Two Transmission Routes,
2020,
30,
0218-1274,
2050083,
10.1142/S0218127420500832
|
|
180.
|
Subhas Khajanchi, Kankan Sarkar,
Forecasting the daily and cumulative number of cases for the COVID-19 pandemic in India,
2020,
30,
1054-1500,
071101,
10.1063/5.0016240
|
|
181.
|
A Islamilova, D Aldila, W Giyarti, H Tasman,
Modelling the spread of atherosclerosis considering relapse and linear treatment,
2021,
1722,
1742-6588,
012039,
10.1088/1742-6596/1722/1/012039
|
|
182.
|
Mudassar Imran, Muhammad Usman, Muhammad Dur-e-Ahmad, Adnan Khan,
Transmission Dynamics of Zika Fever: A SEIR Based Model,
2017,
0971-3514,
10.1007/s12591-017-0374-6
|
|
183.
|
Folashade B. Agusto, Shamise Easley, Kenneth Freeman, Madison Thomas,
Mathematical Model of Three Age-Structured Transmission Dynamics of Chikungunya Virus,
2016,
2016,
1748-670X,
1,
10.1155/2016/4320514
|
|
184.
|
2010,
A new model for MDR-TB infection with undetected TB cases,
978-1-4244-5181-4,
792,
10.1109/CCDC.2010.5498120
|
|
185.
|
Julien Arino, Iman A. Soliman,
2015,
9781118853887,
99,
10.1002/9781118853887.ch5
|
|
186.
|
Longxing Qi, Meng Xue, Jing-an Cui, Qizhi Wang, Tianping Wang,
Schistosomiasis Transmission Model and its Control in Anhui Province,
2018,
80,
0092-8240,
2435,
10.1007/s11538-018-0474-7
|
|
187.
|
Olivia Prosper, Nick Ruktanonchai, Maia Martcheva,
Optimal vaccination and bednet maintenance for the control of malaria in a region with naturally acquired immunity,
2014,
353,
00225193,
142,
10.1016/j.jtbi.2014.03.013
|
|
188.
|
Ana P. Lemos-Paião, Cristiana J. Silva, Delfim F.M. Torres,
An epidemic model for cholera with optimal control treatment,
2017,
318,
03770427,
168,
10.1016/j.cam.2016.11.002
|
|
189.
|
Oluwaseun Y. Sharomi, Mohammad A. Safi, Abba B. Gumel, David J. Gerberry,
Exogenous re-infection does not always cause backward bifurcation in TB transmission dynamics,
2017,
298,
00963003,
322,
10.1016/j.amc.2016.11.009
|
|
190.
|
Elisa F. Long, Naveen K. Vaidya, Margaret L. Brandeau,
Controlling Co-Epidemics: Analysis of HIV and Tuberculosis Infection Dynamics,
2008,
56,
0030-364X,
1366,
10.1287/opre.1080.0571
|
|
191.
|
Lei Luo, Shujing Gao, Yangqiu Ge, Youquan Luo,
Transmission dynamics of a Huanglongbing model with cross protection,
2017,
2017,
1687-1847,
10.1186/s13662-017-1392-y
|
|
192.
|
Tsanou Berge, Samuel Bowong, Jean M.-S. Lubuma,
Global stability of a two-patch cholera model with fast and slow transmissions,
2017,
133,
03784754,
142,
10.1016/j.matcom.2015.10.013
|
|
193.
|
A. E. Tchahou Tchendjeu, S. Bowong, R. Tchitnga, H. B. Fotsin,
Dynamics of the competition between two languages,
2020,
77,
2254-3902,
351,
10.1007/s40324-020-00219-w
|
|
194.
|
O. Sharomi, C. N. Podder, A. B. Gumel, S. M. Mahmud, E. Rubinstein,
Modelling the Transmission Dynamics and Control of the Novel 2009 Swine Influenza (H1N1) Pandemic,
2011,
73,
0092-8240,
515,
10.1007/s11538-010-9538-z
|
|
195.
|
Abdulfatai Atte Momoh, Harrisu Muhammed Abdullahi, Nurudeen G.A. Abimbola, Ali I. Michael,
Modeling, optimal control of intervention strategies and cost effectiveness analysis for buruli ulcer model,
2021,
60,
11100168,
2245,
10.1016/j.aej.2020.12.042
|
|
196.
|
Aprillya Lanz, Zakar White, Terry L. Alford,
Mathematical model of the effects of government intervention and rehabilitation of prostitution,
2018,
11,
1793-5245,
1850033,
10.1142/S179352451850033X
|
|
197.
|
C. P. Bhunu, S. Mushayabasa, J. M. Tchuenche,
A Theoretical Assessment of the Effects of Smoking on the Transmission Dynamics of Tuberculosis,
2011,
73,
0092-8240,
1333,
10.1007/s11538-010-9568-6
|
|
198.
|
Cagri Ozcaglar, Amina Shabbeer, Scott L. Vandenberg, Bülent Yener, Kristin P. Bennett,
Epidemiological models of Mycobacterium tuberculosis complex infections,
2012,
236,
00255564,
77,
10.1016/j.mbs.2012.02.003
|
|
199.
|
Seidu Baba, I Daabo Mohammed, S Bornaa Christopher,
Endemic analysis of HIV/AIDS transmission in the presence of antiretroviral therapy,
2016,
8,
2141-2359,
44,
10.5897/JAHR2016.0377
|
|
200.
|
Samhita Das, Pritha Das, Parthasakha Das,
Chemical and biological control of parasite-borne disease Schistosomiasis: An impulsive optimal control approach,
2021,
0924-090X,
10.1007/s11071-021-06262-0
|
|
201.
|
Swarnali Sharma, G. P. Samanta,
Analysis of a hand–foot–mouth disease model,
2017,
10,
1793-5245,
1750016,
10.1142/S1793524517500164
|
|
202.
|
Sandeep Sharma, Nitu Kumari,
Dynamics of a waterborne pathogen model under the influence of environmental pollution,
2019,
346,
00963003,
219,
10.1016/j.amc.2018.10.044
|
|
203.
|
Nicholas Kwasi-Do Ohene Opoku, Georg Bader, Edem Fiatsonu,
Controlling crime with its associated cost during festive periods using mathematical techniques,
2021,
145,
09600779,
110801,
10.1016/j.chaos.2021.110801
|
|
204.
|
A. K. MANDAL, KUSUMIKA KUNDU, P. CHATTERJEE, J. CHATTOPADHYAY,
AN ECO-EPIDEMIOLOGICAL STUDY WITH PARASITE ATTACK AND ALTERNATIVE PREY,
2009,
17,
0218-3390,
269,
10.1142/S0218339009002776
|
|
205.
|
Tsegaye Kebede Irena, Sunita Gakkhar,
A dynamical model for HIV-typhoid co-infection with typhoid vaccine,
2021,
1598-5865,
10.1007/s12190-020-01485-7
|
|
206.
|
PARIMITA ROY, RANJIT KUMAR UPADHYAY,
SPATIOTEMPORAL TRANSMISSION DYNAMICS OF RECENT EBOLA OUTBREAK IN SIERRA LEONE, WEST AFRICA: IMPACT OF CONTROL MEASURES,
2017,
25,
0218-3390,
369,
10.1142/S0218339017500176
|
|
207.
|
Malik Zaka Ullah, Abdullah K. Alzahrani, Dumitru Baleanu,
An efficient numerical technique for a new fractional tuberculosis model with nonsingular derivative operator,
2019,
13,
1658-3655,
1147,
10.1080/16583655.2019.1688543
|
|
208.
|
Yujiang Liu, Hengmin Lv, Shujing Gao,
A Schistosomiasis Model with Diffusion Effects,
2016,
07,
2152-7385,
587,
10.4236/am.2016.77054
|
|
209.
|
A. Mhlanga,
A theoretical model for the transmission dynamics of HIV/HSV-2 co-infection in the presence of poor HSV-2 treatment adherence,
2018,
3,
2444-8656,
603,
10.2478/AMNS.2018.2.00047
|
|
210.
|
Shuang-Hong Ma, Hai-Feng Huo, Xin-You Meng,
Modelling Alcoholism as a Contagious Disease: A Mathematical Model with Awareness Programs and Time Delay,
2015,
2015,
1026-0226,
1,
10.1155/2015/260195
|
|
211.
|
Akhil Kumar Srivastav, Mini Ghosh,
Modeling the transmission dynamics of malaria with saturated treatment: a case study of India,
2021,
1598-5865,
10.1007/s12190-020-01469-7
|
|
212.
|
EVANS OTIENO OMONDI, FARAI NYABADZA, EBENEZER BONYAH, KINGSLEY BADU,
MODELING THE INFECTION DYNAMICS OF ONCHOCERCIASIS AND ITS TREATMENT,
2017,
25,
0218-3390,
247,
10.1142/S0218339017500139
|
|
213.
|
D Lestari, E R Sari, H Arifah,
Dynamics of a mathematical model of cancer cells with chemotherapy,
2019,
1320,
1742-6588,
012026,
10.1088/1742-6596/1320/1/012026
|
|
214.
|
J. Mushanyu,
A note on the impact of late diagnosis on HIV/AIDS dynamics: a mathematical modelling approach,
2020,
13,
1756-0500,
10.1186/s13104-020-05179-y
|
|
215.
|
D. Okuonghae, S.E. Omosigho,
Analysis of a mathematical model for tuberculosis: What could be done to increase case detection,
2011,
269,
00225193,
31,
10.1016/j.jtbi.2010.09.044
|
|
216.
|
Getachew Teshome Tilahun, Oluwole Daniel Makinde, David Malonza,
Co-dynamics of Pneumonia and Typhoid fever diseases with cost effective optimal control analysis,
2018,
316,
00963003,
438,
10.1016/j.amc.2017.07.063
|
|
217.
|
Idris Babaji Muhammad, Salisu Usaini,
Dynamics of Toxoplasmosis Disease in Cats population with vaccination,
2021,
2714-4704,
17,
10.46481/jnsps.2021.141
|
|
218.
|
Edith Mariela Burbano-Rosero, Lourdes Esteva, Eduardo Ibargüen-Mondragón,
Mathematical model for the growth of Mycobacterium tuberculosis in the granuloma,
2017,
15,
1551-0018,
407,
10.3934/mbe.2018018
|
|
219.
|
E. Bonyah, M.A. Khan, K.O. Okosun, J.F. Gómez‐Aguilar,
On the co‐infection of dengue fever and Zika virus,
2019,
40,
0143-2087,
394,
10.1002/oca.2483
|
|
220.
|
Parimita Roy, Ranjit Kumar Upadhyay,
Conserving Iberian Lynx in Europe: Issues and challenges,
2015,
22,
1476945X,
16,
10.1016/j.ecocom.2014.12.007
|
|
221.
|
Farai Nyabadza, Jennifer Mawunyo Aduamah, Josiah Mushanyu,
Modelling cholera transmission dynamics in the presence of limited resources,
2019,
12,
1756-0500,
10.1186/s13104-019-4504-9
|
|
222.
|
Nelson Owuor Onyango,
Multiple Endemic Solutions in an Epidemic Hepatitis B Model without Vertical Transmission,
2014,
05,
2152-7385,
2518,
10.4236/am.2014.516242
|
|
223.
|
K. Nudee, S. Chinviriyasit, W. Chinviriyasit,
The effect of backward bifurcation in controlling measles transmission by vaccination,
2019,
123,
09600779,
400,
10.1016/j.chaos.2019.04.026
|
|
224.
|
Sangeeta Saha, G.P. Samanta,
Modelling and optimal control of HIV/AIDS prevention through PrEP and limited treatment,
2019,
516,
03784371,
280,
10.1016/j.physa.2018.10.033
|
|
225.
|
Berge Tsanou, Jean C. Kamgang, Jean M.-S. Lubuma, Duplex E. Houpa Danga,
Modeling pyrethroids repellency and its role on the bifurcation analysis for a bed net malaria model,
2020,
136,
09600779,
109809,
10.1016/j.chaos.2020.109809
|
|
226.
|
H.-Y. Chung, C.-Y. Chung, S.-C. Ou,
Analysis of a bio-dynamic model via Lyapunov principle and small-world network for tuberculosis,
2012,
6,
1751-8849,
196,
10.1049/iet-syb.2011.0078
|
|
227.
|
SYLVIE DIANE DJIOMBA NJANKOU, FARAI NYABADZA,
AN OPTIMAL CONTROL MODEL FOR EBOLA VIRUS DISEASE,
2016,
24,
0218-3390,
29,
10.1142/S0218339016500029
|
|
228.
|
Xiulei Jin, Shuwan Jin, Daozhou Gao,
Mathematical Analysis of the Ross–Macdonald Model with Quarantine,
2020,
82,
0092-8240,
10.1007/s11538-020-00723-0
|
|
229.
|
Fabio Sanchez, Juan G. Calvo, Esteban Segura, Zhilan Feng,
A partial differential equation model with age-structure and nonlinear recidivism: Conditions for a backward bifurcation and a general numerical implementation,
2019,
78,
08981221,
3916,
10.1016/j.camwa.2019.06.021
|
|
230.
|
Martin Luther Mann Manyombe, Joseph Mbang, Jean Lubuma, Berge Tsanou,
Global dynamics of a vaccination model for infectious diseases with asymptomatic carriers,
2016,
13,
1551-0018,
813,
10.3934/mbe.2016019
|
|
231.
|
Ibrahim M. ELmojtaba, J.Y.T. Mugisha, Mohsin H.A. Hashim,
Vaccination model for visceral leishmaniasis with infective immigrants,
2013,
36,
01704214,
216,
10.1002/mma.2589
|
|
232.
|
Sangeeta Kumari, Prerna Singh, Ranjit Kumar Upadhyay,
Virus dynamics of a distributed attack on a targeted network: Effect of firewall and optimal control,
2019,
73,
10075704,
74,
10.1016/j.cnsns.2019.02.006
|
|
233.
|
Pauline van den Driessche,
Reproduction numbers of infectious disease models,
2017,
2,
24680427,
288,
10.1016/j.idm.2017.06.002
|
|
234.
|
Jinhui Zhang, Guangting Feng,
Global stability for a tuberculosis model with isolation and incomplete treatment,
2015,
34,
0101-8205,
1237,
10.1007/s40314-014-0177-0
|
|
235.
|
Wendi Wang,
Basic Reproduction Number of Rabies Model with Stage Structure,
2014,
132,
0167-8019,
649,
10.1007/s10440-014-9937-5
|
|
236.
|
Ignacio Barradas, Virgilio Vázquez,
Backward Bifurcation as a Desirable Phenomenon: Increased Fecundity Through Infection,
2019,
81,
0092-8240,
2029,
10.1007/s11538-019-00604-1
|
|
237.
|
Nakul Chitnis, J. M. Cushing, J. M. Hyman,
Bifurcation Analysis of a Mathematical Model for Malaria Transmission,
2006,
67,
0036-1399,
24,
10.1137/050638941
|
|
238.
|
E.O. Omondi, F. Nyabadza, R.J. Smith?, Yuriy Rogovchenko,
Modelling the impact of mass administration of ivermectin in the treatment of onchocerciasis (river blindness),
2018,
5,
2574-2558,
1429700,
10.1080/23311835.2018.1429700
|
|
239.
|
Hai-Feng Huo, Cheng-Cheng Zhu,
Influence of Relapse in a Giving Up Smoking Model,
2013,
2013,
1085-3375,
1,
10.1155/2013/525461
|
|
240.
|
Wenhe Wang, Chunyan Ji, Yingjie Bi, Siyu Liu,
Stability and asymptoticity of stochastic epidemic model with interim immune class and independent perturbations,
2020,
104,
08939659,
106245,
10.1016/j.aml.2020.106245
|
|
241.
|
C. Balde, M. Lam, A. Bah, S. Bowong, J. J. Tewa,
Theoretical assessment of the impact of environmental contamination on the dynamical transmission of polio,
2019,
12,
1793-5245,
1950012,
10.1142/S1793524519500128
|
|
242.
|
UA Danbaba, SM Garba,
Stability Analysis and Optimal Control for Yellow Fever Model with Vertical Transmission,
2020,
6,
2349-5103,
10.1007/s40819-020-00860-z
|
|
243.
|
Joydip Dhar, Mani Tyagi, Poonam Sinha,
The impact of media on a new product innovation diffusion: a mathematical model,
2014,
33,
2175-1188,
169,
10.5269/bspm.v33i1.23026
|
|
244.
|
Ranjit Kumar Upadhyay, Parimita Roy,
Deciphering Dynamics of Recent Epidemic Spread and Outbreak in West Africa: The Case of Ebola Virus,
2016,
26,
0218-1274,
1630024,
10.1142/S021812741630024X
|
|
245.
|
G. Kolaye, I. Damakoa, S. Bowong, R. Houe, D. Békollè,
A mathematical model of cholera in a periodic environment with control actions,
2020,
1793-5245,
2050025,
10.1142/S1793524520500254
|
|
246.
|
Assefa Denekew Zewdie, Sunita Gakkhar, Ferenc Hartung,
A Mathematical Model for Nipah Virus Infection,
2020,
2020,
1687-0042,
1,
10.1155/2020/6050834
|
|
247.
|
Claver P. Bhunu, Winston Garira,
A TWO STRAIN TUBERCULOSIS TRANSMISSION MODEL WITH THERAPY AND QUARANTINE,
2009,
14,
1392-6292,
291,
10.3846/1392-6292.2009.14.291-312
|
|
248.
|
Amar Sha, Sudip Samanta, Maia Martcheva, Joydev Chattopadhyay,
Backward bifurcation, oscillations and chaos in an eco-epidemiological model with fear effect,
2019,
13,
1751-3758,
301,
10.1080/17513758.2019.1593525
|
|
249.
|
Isaac Mwangi Wangari, Lewi Stone,
Analysis of a Heroin Epidemic Model with Saturated Treatment Function,
2017,
2017,
1110-757X,
1,
10.1155/2017/1953036
|
|
250.
|
Amandeep Kaur Kahlon, Ashok Sharma,
2015,
chapter 11,
9781466666115,
240,
10.4018/978-1-4666-6611-5.ch011
|
|
251.
|
Omar Saucedo, M. Martcheva,
Competition between low and high pathogenicity avian influenza in a two-patch system,
2017,
288,
00255564,
52,
10.1016/j.mbs.2017.02.012
|
|
252.
|
Iboi Enahoro, Steffen Eikenberry, Abba B. Gumel, Silvie Huijben, Krijn Paaijmans,
Long-lasting insecticidal nets and the quest for malaria eradication: a mathematical modeling approach,
2020,
81,
0303-6812,
113,
10.1007/s00285-020-01503-z
|
|
253.
|
G. THOMAS, E. M. LUNGU,
THE INFLUENCE OF HEAVY ALCOHOL CONSUMPTION ON HIV INFECTION AND PROGRESSION,
2009,
17,
0218-3390,
685,
10.1142/S0218339009003083
|
|
254.
|
Matt Begun, Anthony T. Newall, Guy B. Marks, James G. Wood, Michael George Roberts,
Contact Tracing of Tuberculosis: A Systematic Review of Transmission Modelling Studies,
2013,
8,
1932-6203,
e72470,
10.1371/journal.pone.0072470
|
|
255.
|
Peter E. Kloeden, Christian Pötzsche,
2013,
Chapter 1,
978-3-319-03079-1,
3,
10.1007/978-3-319-03080-7_1
|
|
256.
|
Steady Mushayabasa,
Modeling the impact of optimal screening on typhoid dynamics,
2016,
4,
2195-268X,
330,
10.1007/s40435-014-0123-4
|
|
257.
|
N. Hussaini, J. M-S Lubuma, K. Barley, A.B. Gumel,
Mathematical analysis of a model for AVL–HIV co-endemicity,
2016,
271,
00255564,
80,
10.1016/j.mbs.2015.10.008
|
|
258.
|
Akhil Kumar Srivastav, S. Athithan, Mini Ghosh,
Modeling and analysis of crime prediction and prevention,
2020,
10,
1869-5450,
10.1007/s13278-020-00637-8
|
|
259.
|
Bruno Buonomo, Deborah Lacitignola,
Analysis of a tuberculosis model with a case study in Uganda,
2010,
4,
1751-3758,
571,
10.1080/17513750903518441
|
|
260.
|
Saeed Ahmad, Saud Owyed, Abdel-Haleem Abdel-Aty, Emad E. Mahmoud, Kamal Shah, Hussam Alrabaiah,
Mathematical analysis of COVID-19 via new mathematical model,
2021,
143,
09600779,
110585,
10.1016/j.chaos.2020.110585
|
|
261.
|
Hamadjam Abboubakar, Jean Claude Kamgang, Daniel Tieudjo,
Backward bifurcation and control in transmission dynamics of arboviral diseases,
2016,
278,
00255564,
100,
10.1016/j.mbs.2016.06.002
|
|
262.
|
C. P. BHUNU, J. M. TCHUENCHE, W. GARIRA, G. MAGOMBEDZE, S. MUSHAYABASA,
MODELING THE EFFECTS OF SCHISTOSOMIASIS ON THE TRANSMISSION DYNAMICS OF HIV/AIDS,
2010,
18,
0218-3390,
277,
10.1142/S0218339010003196
|
|
263.
|
Edward T. Chiyaka, Tazvitya Muyendesi, Philimon Nyamugure, Farikayi K. Mutasa,
Theoretical Assessment of the Transmission Dynamics of Leprosy,
2013,
04,
2152-7385,
387,
10.4236/am.2013.42059
|
|
264.
|
Ignacio Barradas, Rocio Marilyn Caja Rivera,
Cutaneous leishmaniasis in Peru using a vector‐host model: Backward bifurcation and sensitivity analysis,
2018,
41,
0170-4214,
1908,
10.1002/mma.4718
|
|
265.
|
LUJU LIU, XINCHUN GAO,
QUALITATIVE STUDY FOR A MULTI-DRUG RESISTANT TB MODEL WITH EXOGENOUS REINFECTION AND RELAPSE,
2012,
05,
1793-5245,
1250031,
10.1142/S1793524511001763
|
|
266.
|
Xueyong Zhou, Xiangyun Shi, Huidong Cheng,
Modelling and stability analysis for a tuberculosis model with healthy education and treatment,
2013,
32,
0101-8205,
245,
10.1007/s40314-013-0008-8
|
|
267.
|
C. P. Bhunu, S. Mushayabasa,
Impact of Intravenous Drug Use on HIV/AIDS among Women Prisoners: A Mathematical Modelling Approach,
2013,
2013,
2314-5420,
1,
10.1155/2013/718039
|
|
268.
|
К.К. Авилов, K.K. Avilov,
Mathematical Models of Tuberculosis Extension and Control of it,
2007,
2,
19946538,
188,
10.17537/2007.2.188
|
|
269.
|
Stefano Giovagnoli, Aurelie Schoubben, Maurizio Ricci,
The long and winding road to inhaled TB therapy: not only the bug’s fault,
2017,
43,
0363-9045,
347,
10.1080/03639045.2016.1272119
|
|
270.
|
D. OKUONGHAE, V. U. AIHIE,
OPTIMAL CONTROL MEASURES FOR TUBERCULOSIS MATHEMATICAL MODELS INCLUDING IMMIGRATION AND ISOLATION OF INFECTIVE,
2010,
18,
0218-3390,
17,
10.1142/S0218339010003160
|
|
271.
|
Jemal Mohammed-Awel, Eric Numfor,
Optimal insecticide-treated bed-net coverage and malaria treatment in a malaria-HIV co-infection model,
2017,
11,
1751-3758,
160,
10.1080/17513758.2016.1192228
|
|
272.
|
Haileyesus Tessema Alemneh,
Mathematical Modeling, Analysis, and Optimal Control of Corruption Dynamics,
2020,
2020,
1110-757X,
1,
10.1155/2020/5109841
|
|
273.
|
A. Ishaku, A. M. Gazali, S. A. Abdullahi, N. Hussaini,
Analysis and optimal control of an HIV model based on CD4 count,
2020,
81,
0303-6812,
209,
10.1007/s00285-020-01508-8
|
|
274.
|
Prince Harvim, Hong Zhang, Paul Georgescu, Lai Zhang,
Cigarette smoking on college campuses: an epidemical modelling approach,
2021,
65,
1598-5865,
515,
10.1007/s12190-020-01402-y
|
|
275.
|
Sulayman Fatima, Farah Aini Abdullah, Mohd Hafiz Mohd,
2020,
2274,
0094-243X,
050012,
10.1063/5.0018186
|
|
276.
|
Xue-Zhi Li, Junyuan Yang, Maia Martcheva,
2020,
Chapter 2,
978-3-030-42495-4,
23,
10.1007/978-3-030-42496-1_2
|
|
277.
|
Dhiraj Kumar Das, T.K. Kar,
Dynamical analysis of an age-structured tuberculosis mathematical model with LTBI detectivity,
2020,
492,
0022247X,
124407,
10.1016/j.jmaa.2020.124407
|
|
278.
|
Saif Ullah, Obaid Ullah, Muhammad Altaf Khan, Taza Gul,
Optimal control analysis of tuberculosis (TB) with vaccination and treatment,
2020,
135,
2190-5444,
10.1140/epjp/s13360-020-00615-1
|
|
279.
|
Rajiv Aggarwal,
Stability analysis of a delayed HIV-TB co-infection model in resource limitation settings,
2020,
140,
09600779,
110138,
10.1016/j.chaos.2020.110138
|
|
280.
|
Jing Chen, Jicai Huang, John C. Beier, Robert Stephen Cantrell, Chris Cosner, Douglas O. Fuller, Guoyan Zhang, Shigui Ruan,
Modeling and control of local outbreaks of West Nile virus in the United States,
2016,
21,
1531-3492,
2423,
10.3934/dcdsb.2016054
|
|
281.
|
J.B.H. Njagarah, F. Nyabadza,
A metapopulation model for cholera transmission dynamics between communities linked by migration,
2014,
241,
00963003,
317,
10.1016/j.amc.2014.05.036
|
|
282.
|
Wylie Stroberg, Santiago Schnell,
On the validity and errors of the pseudo-first-order kinetics in ligand–receptor binding,
2017,
287,
00255564,
3,
10.1016/j.mbs.2016.09.010
|
|
283.
|
Anuradha Yadav, Prashant K. Srivastava,
The impact of information and saturated treatment with time delay in an infectious disease model,
2020,
1598-5865,
10.1007/s12190-020-01436-2
|
|
284.
|
Samuel Bowong, A.M. Aziz Alaoui,
Optimal intervention strategies for tuberculosis,
2013,
18,
10075704,
1441,
10.1016/j.cnsns.2012.08.001
|
|
285.
|
Nafiu Hussaini, Kamaldeen Okuneye, Abba B. Gumel,
Mathematical analysis of a model for zoonotic visceral leishmaniasis,
2017,
2,
24680427,
455,
10.1016/j.idm.2017.12.002
|
|
286.
|
K. O. Okosun, M. A. Khan, E. Bonyah, S. T. Ogunlade,
On the dynamics of HIV-AIDS and cryptosporidiosis,
2017,
132,
2190-5444,
10.1140/epjp/i2017-11625-3
|
|
287.
|
Abhishek Kumar, ,
Dynamic Behavior of an SIR Epidemic Model along with Time Delay; Crowley–Martin Type Incidence Rate and Holling Type II Treatment Rate,
2019,
20,
1565-1339,
757,
10.1515/ijnsns-2018-0208
|
|
288.
|
Ellen Brooks-Pollock, Ted Cohen, Megan Murray, Madhukar Pai,
The Impact of Realistic Age Structure in Simple Models of Tuberculosis Transmission,
2010,
5,
1932-6203,
e8479,
10.1371/journal.pone.0008479
|
|
289.
|
Wayne M. Getz, Richard Salter, Oliver Muellerklein, Hyun S. Yoon, Krti Tallam,
Modeling epidemics: A primer and Numerus Model Builder implementation,
2018,
25,
17554365,
9,
10.1016/j.epidem.2018.06.001
|
|
290.
|
Baba Seidu, Oluwole D. Makinde, Ibrahim Y. Seini,
Mathematical Analysis of the Effects of HIV-Malaria Co-infection on Workplace Productivity,
2015,
63,
0001-5342,
151,
10.1007/s10441-015-9255-y
|
|
291.
|
Samuel Bowong, Jean Jules Tewa,
Global analysis of a dynamical model for transmission of tuberculosis with a general contact rate,
2010,
15,
10075704,
3621,
10.1016/j.cnsns.2010.01.007
|
|
292.
|
Hailay Weldegiorgis Berhe, Oluwole Daniel Makinde, David Mwangi Theuri,
Co-dynamics of measles and dysentery diarrhea diseases with optimal control and cost-effectiveness analysis,
2019,
347,
00963003,
903,
10.1016/j.amc.2018.11.049
|
|
293.
|
Shu-Min Guo, Xue-Zhi Li, Mini Ghosh,
Analysis of a Dengue Disease Model with Nonlinear Incidence,
2013,
2013,
1026-0226,
1,
10.1155/2013/320581
|
|
294.
|
Ram Singh, Madhu Jain, Shoket Ali,
2016,
Mathematical analysis of transmission dynamics of tuberculosis with recurrence based on treatment,
978-1-4673-9939-5,
2990,
10.1109/ICEEOT.2016.7755248
|
|
295.
|
István Z. Kiss, Joel C. Miller, Péter L. Simon,
2017,
Chapter 3,
978-3-319-50804-7,
67,
10.1007/978-3-319-50806-1_3
|
|
296.
|
H M Ndongmo Teytsa, B Tsanou, S Bowong, J M-S Lubuma,
Bifurcation analysis of a phage-bacteria interaction model with prophage induction,
2021,
38,
1477-8599,
28,
10.1093/imammb/dqaa010
|
|
297.
|
Lindsay Simpson, Abba B. Gumel,
Mathematical assessment of the role of pre-exposure prophylaxis on HIV transmission dynamics,
2017,
293,
00963003,
168,
10.1016/j.amc.2016.07.043
|
|
298.
|
F. Nyabadza, C. P. Ogbogbo, J. Mushanyu,
Modelling the role of correctional services on gangs: insights through a mathematical model,
2017,
4,
2054-5703,
170511,
10.1098/rsos.170511
|
|
299.
|
Carlos Castillo-Chavez, Derdei Bichara, Benjamin R. Morin,
Perspectives on the role of mobility, behavior, and time scales in the spread of diseases,
2016,
113,
0027-8424,
14582,
10.1073/pnas.1604994113
|
|
300.
|
Sudhanshu Kumar Biswas, Uttam Ghosh, Susmita Sarkar,
Mathematical model of zika virus dynamics with vector control and sensitivity analysis,
2020,
5,
24680427,
23,
10.1016/j.idm.2019.12.001
|
|
301.
|
Rui Xu, Xiaohong Tian, Fengqin Zhang,
Global dynamics of a tuberculosis transmission model with age of infection and incomplete treatment,
2017,
2017,
1687-1847,
10.1186/s13662-017-1294-z
|
|
302.
|
Gabriel Otieno, Joseph K. Koske, John M. Mutiso,
Transmission Dynamics and Optimal Control of Malaria in Kenya,
2016,
2016,
1026-0226,
1,
10.1155/2016/8013574
|
|
303.
|
Sergey Kabanikhin, Olga Krivorotko, Victoriya Kashtanova, Varvara Latyshenko,
2017,
Identification the mathematical model of the transmission TB/HIV co-infection in endemic areas,
978-1-5386-1596-6,
77,
10.1109/SIBIRCON.2017.8109841
|
|
304.
|
Ángel G. C. Pérez, Eric Avila-Vales, Gerardo Emilio García-Almeida,
Bifurcation Analysis of an SIR Model with Logistic Growth, Nonlinear Incidence, and Saturated Treatment,
2019,
2019,
1076-2787,
1,
10.1155/2019/9876013
|
|
305.
|
Kbenesh W. Blayneh, Abba B. Gumel, Suzanne Lenhart, Tim Clayton,
Backward Bifurcation and Optimal Control in Transmission Dynamics of West Nile Virus,
2010,
72,
0092-8240,
1006,
10.1007/s11538-009-9480-0
|
|
306.
|
D. P. MOUALEU, J. MBANG, R. NDOUNDAM, S. BOWONG,
MODELING AND ANALYSIS OF HIV AND HEPATITIS C CO-INFECTIONS,
2011,
19,
0218-3390,
683,
10.1142/S0218339011004159
|
|
307.
|
Abadi Abay Gebremeskel, Hailay Weldegiorgis Berhe, Habtu Alemayehu Atsbaha,
Mathematical modelling and analysis of COVID-19 epidemic and predicting its future situation in Ethiopia,
2021,
22,
22113797,
103853,
10.1016/j.rinp.2021.103853
|
|
308.
|
S. Mushayabasa, C.P. Bhunu, C. Webb, M. Dhlamini,
A mathematical model for assessing the impact of poverty on yaws eradication,
2012,
36,
0307904X,
1653,
10.1016/j.apm.2011.09.022
|
|
309.
|
S.M. Garba, A.B. Gumel, M.R. Abu Bakar,
Backward bifurcations in dengue transmission dynamics,
2008,
215,
00255564,
11,
10.1016/j.mbs.2008.05.002
|
|
310.
|
Abba B. Gumel, Jean M.-S. Lubuma, Oluwaseun Sharomi, Yibeltal Adane Terefe,
Mathematics of a sex-structured model for syphilis transmission dynamics,
2018,
41,
01704214,
8488,
10.1002/mma.4734
|
|
311.
|
Usman A. Danbaba, Salisu M. Garba,
Modeling the transmission dynamics of Zika with sterile insect technique,
2018,
41,
01704214,
8871,
10.1002/mma.5336
|
|
312.
|
Renu Verma, S. P. Tiwari, Ranjit Kumar Upadhyay,
Transmission dynamics of epidemic spread and outbreak of Ebola in West Africa: fuzzy modeling and simulation,
2019,
60,
1598-5865,
637,
10.1007/s12190-018-01231-0
|
|
313.
|
Aristide G. Lambura, Gasper G. Mwanga, Livingstone Luboobi, Dmitry Kuznetsov, Chung-Min Liao,
Modeling the Effects of Helminth Infection on the Transmission Dynamics of Mycobacterium tuberculosis under Optimal Control Strategies,
2020,
2020,
1748-6718,
1,
10.1155/2020/8869377
|
|
314.
|
John B.H. Njagarah, Farai Nyabadza, Moatlhodi Kgosimore, Cang Hui,
Significance of antiviral therapy and CTL-mediated immune response in containing hepatitis B and C virus infection,
2021,
397,
00963003,
125926,
10.1016/j.amc.2020.125926
|
|
315.
|
Samhita Das, Pritha Das, Parthasakha Das, Jacek Banasiak,
Control of Nipah virus outbreak in commercial pig-farm with biosecurity and culling,
2020,
15,
0973-5348,
64,
10.1051/mmnp/2020047
|
|
316.
|
Xiaomei Feng, Shigui Ruan, Zhidong Teng, Kai Wang,
Stability and backward bifurcation in a malaria transmission model with applications to the control of malaria in China,
2015,
266,
00255564,
52,
10.1016/j.mbs.2015.05.005
|
|
317.
|
Amandeep Kaur Kahlon, Ashok Sharma,
2019,
chapter 115,
9781522575016,
2230,
10.4018/978-1-5225-7501-6.ch115
|
|
318.
|
Necibe Tuncer, Maia Marctheva, Brian LaBarre, Sabrina Payoute,
Structural and Practical Identifiability Analysis of Zika Epidemiological Models,
2018,
80,
0092-8240,
2209,
10.1007/s11538-018-0453-z
|
|
319.
|
Samuel Bowong, Jurgen Kurths,
Modeling and analysis of the transmission dynamics of tuberculosis without and with seasonality,
2012,
67,
0924-090X,
2027,
10.1007/s11071-011-0127-y
|
|
320.
|
Vijay Pal Bajiya, Sarita Bugalia, Jai Prakash Tripathi,
Mathematical modeling of COVID-19: Impact of non-pharmaceutical interventions in India,
2020,
30,
1054-1500,
113143,
10.1063/5.0021353
|
|
321.
|
Oluwaseun Sharomi, Tufail Malik,
A model to assess the effect of vaccine compliance on Human Papillomavirus infection and cervical cancer,
2017,
47,
0307904X,
528,
10.1016/j.apm.2017.03.025
|
|
322.
|
Joshua A. Mwasunda, Jacob I. Irunde, Damian Kajunguri, Dmitry Kuznetsov,
Modeling and analysis of taeniasis and cysticercosis transmission dynamics in humans, pigs and cattle,
2021,
2021,
1687-1847,
10.1186/s13662-021-03341-9
|
|
323.
|
F. Capone, V. De Cataldis, R. De Luca,
On the Stability of a SEIR Reaction Diffusion Model for Infections Under Neumann Boundary Conditions,
2014,
132,
0167-8019,
165,
10.1007/s10440-014-9899-7
|
|
324.
|
Rachid Ouifki, Jacek Banasiak,
Epidemiological models with quadratic equation for endemic equilibria—A bifurcation atlas,
2020,
43,
0170-4214,
10413,
10.1002/mma.6389
|
|
325.
|
R. Naz, K. S. Mahomed, I. Naeem,
First integrals and exact solutions of the SIRI and tuberculosis models,
2016,
39,
01704214,
4654,
10.1002/mma.3903
|
|
326.
|
Sansao A. Pedro,
Basic Properties and Qualitative Dynamics of a Vector-Borne Disease Model with Vector Stages and Vertical Transmission,
2018,
2018,
1110-757X,
1,
10.1155/2018/2618985
|
|
327.
|
Xi Huo,
Modeling Antibiotic Use Strategies in Intensive Care Units: Comparing De-escalation and Continuation,
2020,
82,
0092-8240,
10.1007/s11538-019-00686-x
|
|
328.
|
D. Okuonghae,
A mathematical model of tuberculosis transmission with heterogeneity in disease susceptibility and progression under a treatment regime for infectious cases,
2013,
37,
0307904X,
6786,
10.1016/j.apm.2013.01.039
|
|
329.
|
Persistent high incidence of tuberculosis among immigrants in a low-incidence country: Impact of immigrants with early or late latency,
2011,
8,
1551-0018,
695,
10.3934/mbe.2011.8.695
|
|
330.
|
Chikodili Helen Ugwuishiwu, D. S. Sarki, G. C. E. Mbah,
Nonlinear Analysis of the Dynamics of Criminality and Victimisation: A Mathematical Model with Case Generation and Forwarding,
2019,
2019,
1110-757X,
1,
10.1155/2019/9891503
|
|
331.
|
Reza Memarbashi, Seyed Mahdi Mahmoudi,
A dynamic model for the COVID‐19 with direct and indirect transmission pathways,
2021,
0170-4214,
10.1002/mma.7154
|
|
332.
|
M. A. Khan, K. Ali, E. Bonyah, K. O. Okosun, S. Islam, A. Khan,
Mathematical modeling and stability analysis of Pine Wilt Disease with optimal control,
2017,
7,
2045-2322,
10.1038/s41598-017-03179-w
|
|
333.
|
Vusi Mpendulo Magagula, S’yanda Nkanyiso Mungwe,
Stability analysis of a virulent code in a network of computers,
2021,
182,
03784754,
296,
10.1016/j.matcom.2020.11.005
|
|
334.
|
T.K. Kar, Swapan Kumar Nandi, Soovoojeet Jana, Manotosh Mandal,
Stability and bifurcation analysis of an epidemic model with the effect of media,
2019,
120,
09600779,
188,
10.1016/j.chaos.2019.01.025
|
|
335.
|
Josiah Mushanyu,
Role of imitation and limited rehabilitation capacity on the spread of drug abuse,
2018,
11,
1756-0500,
10.1186/s13104-018-3574-4
|
|
336.
|
Heizlan Muhammad, Paian Sianturi, Endar H. Nugrahani,
Dynamical System of Tuberculosis Considering Lost Sight Compartment,
2019,
9,
23946962,
1,
10.31033/ijemr.9.3.1
|
|
337.
|
Lauren R. Dickman, Evan Milliken, Yang Kuang,
Tumor Control, Elimination, and Escape through a Compartmental Model of Dendritic Cell Therapy for Melanoma,
2020,
80,
0036-1399,
906,
10.1137/19M1276303
|
|
338.
|
Parthasakha Das, Sk Shahid Nadim, Samhita Das, Pritha Das,
Dynamics of COVID-19 transmission with comorbidity: a data driven modelling based approach,
2021,
0924-090X,
10.1007/s11071-021-06324-3
|
|
339.
|
E. A. Bakare, C. R. Nwozo,
Bifurcation and Sensitivity Analysis of Malaria–Schistosomiasis Co-infection Model,
2017,
3,
2349-5103,
971,
10.1007/s40819-017-0394-5
|
|
340.
|
A. Mhlanga,
Dynamical analysis and control strategies in modelling Ebola virus disease,
2019,
2019,
1687-1847,
10.1186/s13662-019-2392-x
|
|
341.
|
Abhishek Kumar, Kanica Goel, ,
A deterministic time-delayed SIR epidemic model: mathematical modeling and analysis,
2020,
139,
1431-7613,
67,
10.1007/s12064-019-00300-7
|
|
342.
|
ROUMEN ANGUELOV, YVES DUMONT, JEAN LUBUMA, EUNICE MUREITHI,
Stability Analysis and Dynamics Preserving Nonstandard Finite Difference Schemes for a Malaria Model,
2013,
20,
0889-8480,
101,
10.1080/08898480.2013.777240
|
|
343.
|
A. Nwankwo, D. Okuonghae,
A Mathematical Model for the Population Dynamics of Malaria with a Temperature Dependent Control,
2019,
0971-3514,
10.1007/s12591-019-00466-y
|
|
344.
|
E. T. Ngarakana-Gwasira, C. P. Bhunu, E. Mashonjowa,
Assessing the impact of temperature on malaria transmission dynamics,
2014,
25,
1012-9405,
1095,
10.1007/s13370-013-0178-y
|
|
345.
|
Ranjit Kumar Upadhyay, Ashok Kumar Pal, Sangeeta Kumari, Parimita Roy,
Dynamics of an SEIR epidemic model with nonlinear incidence and treatment rates,
2019,
96,
0924-090X,
2351,
10.1007/s11071-019-04926-6
|
|
346.
|
Hossein Kheiri, Baojun Song, Fereshteh Nazari, Carlos Castillo-Chavez, Azizeh Jabbari,
A two-strain TB model with multiple latent stages,
2016,
13,
1551-0018,
741,
10.3934/mbe.2016017
|
|
347.
|
O. Sharomi, A.B. Gumel,
Mathematical study of a risk-structured two-group model for Chlamydia transmission dynamics,
2011,
35,
0307904X,
3653,
10.1016/j.apm.2010.12.006
|
|
348.
|
Shujing Gao, Yujiang Liu, Youquan Luo, Dehui Xie,
Control problems of a mathematical model for schistosomiasis transmission dynamics,
2011,
63,
0924-090X,
503,
10.1007/s11071-010-9818-z
|
|
349.
|
HONG ZHANG, PRINCE HARVIM, PAUL GEORGESCU,
PREVENTING THE SPREAD OF SCHISTOSOMIASIS IN GHANA: POSSIBLE OUTCOMES OF INTEGRATED OPTIMAL CONTROL STRATEGIES,
2017,
25,
0218-3390,
625,
10.1142/S0218339017400058
|
|
350.
|
Baba Seidu, O. D. Makinde, Christopher S. Bornaa,
Mathematical Analysis of an Industrial HIV/AIDS Model that Incorporates Carefree Attitude Towards Sex,
2021,
0001-5342,
10.1007/s10441-020-09407-7
|
|
351.
|
Navjot Kaur, Mini Ghosh, S. S. Bhatia,
The role of screening and treatment in the transmission dynamics of HIV/AIDS and tuberculosis co-infection: a mathematical study,
2014,
40,
0092-0606,
139,
10.1007/s10867-014-9342-3
|
|
352.
|
Calvin Tadmon, Severin Foko,
Modeling and mathematical analysis of an initial boundary value problem for hepatitis B virus infection,
2019,
474,
0022247X,
309,
10.1016/j.jmaa.2019.01.047
|
|
353.
|
Bruno Buonomo, Marianna Cerasuolo,
The effect of time delay in plant--pathogen interactions with host demography,
2015,
12,
1551-0018,
473,
10.3934/mbe.2015.12.473
|
|
354.
|
Mixed vaccination strategy for the control of tuberculosis: A case study in China,
2017,
14,
1551-0018,
695,
10.3934/mbe.2017039
|
|
355.
|
Shaibu Osman, Oluwole Daniel Makinde,
A Mathematical Model for Coinfection of Listeriosis and Anthrax Diseases,
2018,
2018,
0161-1712,
1,
10.1155/2018/1725671
|
|
356.
|
Bishal Chhetri, Vijay M. Bhagat, D.K.K. Vamsi, V.S. Ananth, Bhanu Prakash D, Roshan Mandale, Swapna Muthusamy, Carani B Sanjeevi,
Within-host mathematical modeling on crucial inflammatory mediators and drug interventions in COVID-19 identifies combination therapy to be most effective and optimal,
2021,
60,
11100168,
2491,
10.1016/j.aej.2020.12.011
|
|
357.
|
Juan Wang, Xue-Zhi Li, Souvik Bhattacharya,
The backward bifurcation of a model for malaria infection,
2018,
11,
1793-5245,
1850018,
10.1142/S1793524518500183
|
|
358.
|
Liping Wang, Hongyong Zhao,
Modeling and dynamics analysis of Zika transmission with contaminated aquatic environments,
2021,
0924-090X,
10.1007/s11071-021-06289-3
|
|
359.
|
FOLASHADE AGUSTO, SUZANNE LENHART,
OPTIMAL CONTROL OF THE SPREAD OF MALARIA SUPERINFECTIVITY,
2013,
21,
0218-3390,
1340002,
10.1142/S0218339013400020
|
|
360.
|
C.P. Bhunu, W. Garira, Z. Mukandavire, G. Magombedze,
Modelling the effects of pre-exposure and post-exposure vaccines in tuberculosis control,
2008,
254,
00225193,
633,
10.1016/j.jtbi.2008.06.023
|
|
361.
|
Swarnali Sharma, G.P. Samanta,
DRINKING AS AN EPIDEMIC: A MATHEMATICAL MODEL WITH DYNAMIC BEHAVIOUR,
2013,
31,
1598-5857,
1,
10.14317/jami.2013.001
|
|
362.
|
Salisu M. Garba, Chibale K. Mumba,
Mathematical analysis of a model for the transmission dynamics of Trichomonas vaginalis (TV) and HIV coinfection,
2018,
41,
01704214,
8741,
10.1002/mma.5108
|
|
363.
|
Drew Posny, Jin Wang, Zindoga Mukandavire, Chairat Modnak,
Analyzing transmission dynamics of cholera with public health interventions,
2015,
264,
00255564,
38,
10.1016/j.mbs.2015.03.006
|
|
364.
|
Didar Murad, Noor Badshah, Syed Muhammad Ali,
2018,
Mathematical Approach for the Dengue Fever Transmission Dynamics,
978-1-5386-5460-6,
1,
10.1109/ICAEM.2018.8536287
|
|
365.
|
SWARNALI SHARMA, G. P. SAMANTA,
ANALYSIS OF A CHLAMYDIA EPIDEMIC MODEL,
2014,
22,
0218-3390,
713,
10.1142/S0218339014500296
|
|
366.
|
Nitu Kumari, Sandeep Sharma,
Modeling the Dynamics of Infectious Disease Under the Influence of Environmental Pollution,
2018,
4,
2349-5103,
10.1007/s40819-018-0514-x
|
|
367.
|
Francis Mugabi, Joseph Mugisha, Betty Nannyonga, Henry Kasumba, Margaret Tusiime,
Parameter-dependent transmission dynamics and optimal control of foot and mouth disease in a contaminated environment,
2019,
27,
2090-9128,
10.1186/s42787-019-0058-1
|
|
368.
|
BIFURCATION ANALYSIS OF AN SIRS EPIDEMIC MODEL WITH STANDARD INCIDENCE RATE AND SATURATED TREATMENT FUNCTION,
2017,
7,
2156-907X,
1070,
10.11948/2017067
|
|
369.
|
Steady Mushayabasa, Claver P. Bhunu,
Assessing the Impact of Increasing Antimicrobial Resistance of Vibrio cholerae on the Future Trends of Cholera Epidemic,
2012,
2012,
2090-7702,
1,
10.5402/2012/127492
|
|
370.
|
A. K. Misra, Anjali Jha,
Modeling the effect of population pressure on the dynamics of carbon dioxide gas,
2021,
1598-5865,
10.1007/s12190-020-01492-8
|
|
371.
|
Yongqi Liu, Zhendong Sun, Guiquan Sun, Qiu Zhong, Li Jiang, Lin Zhou, Yupeng Qiao, Zhongwei Jia,
Modeling Transmission of Tuberculosis with MDR and Undetected Cases,
2011,
2011,
1026-0226,
1,
10.1155/2011/296905
|
|
372.
|
F.B. Agusto, S. Bewick, W.F. Fagan,
Mathematical model for Zika virus dynamics with sexual transmission route,
2017,
29,
1476945X,
61,
10.1016/j.ecocom.2016.12.007
|
|
373.
|
Jianfeng Luo, Wendi Wang, Hongyan Chen, Rui Fu,
Bifurcations of a mathematical model for HIV dynamics,
2016,
434,
0022247X,
837,
10.1016/j.jmaa.2015.09.048
|
|
374.
|
Deborah Lacitignola, Fasma Diele,
On the Z-type control of backward bifurcations in epidemic models,
2019,
315,
00255564,
108215,
10.1016/j.mbs.2019.108215
|
|
375.
|
Sangeeta Saha, G.P. Samanta,
Dynamics of an epidemic model with impact of toxins,
2019,
527,
03784371,
121152,
10.1016/j.physa.2019.121152
|
|
376.
|
Farai Nyabadza, Senelani D. Hove-Musekwa,
From heroin epidemics to methamphetamine epidemics: Modelling substance abuse in a South African province,
2010,
225,
00255564,
132,
10.1016/j.mbs.2010.03.002
|
|
377.
|
Poduri S.R.S. Rao,
2017,
36,
9780444639684,
67,
10.1016/bs.host.2017.08.002
|
|
378.
|
Anupama Sharma, A.K. Misra,
Backward bifurcation in a smoking cessation model with media campaigns,
2015,
39,
0307904X,
1087,
10.1016/j.apm.2014.07.022
|
|
379.
|
Sandeep Sharma, Fateh Singh,
Backward bifurcation in a cholera model with a general treatment function,
2021,
3,
2523-3963,
10.1007/s42452-021-04189-0
|
|
380.
|
Isaac Mwangi Wangari, Lewi Stone, Nakul Chitnis,
Backward bifurcation and hysteresis in models of recurrent tuberculosis,
2018,
13,
1932-6203,
e0194256,
10.1371/journal.pone.0194256
|
|
381.
|
Musa Rabiu, Robert Willie, Nabendra Parumasur,
Mathematical analysis of a disease-resistant model with imperfect vaccine, quarantine and treatment,
2020,
69,
0035-5038,
603,
10.1007/s11587-020-00496-7
|
|
382.
|
Maia Martcheva,
Methods for deriving necessary and sufficient conditions for backward bifurcation,
2019,
13,
1751-3758,
538,
10.1080/17513758.2019.1647359
|
|
383.
|
Li-Ming Cai, Abid Ali Lashari, Il Hyo Jung, Kazeem Oare Okosun, Young Il Seo,
Mathematical Analysis of a Malaria Model with Partial Immunity to Reinfection,
2013,
2013,
1085-3375,
1,
10.1155/2013/405258
|
|
384.
|
Tahir Khan, Zakir Ullah, Nigar Ali, Gul Zaman,
Modeling and control of the hepatitis B virus spreading using an epidemic model,
2019,
124,
09600779,
1,
10.1016/j.chaos.2019.04.033
|
|
385.
|
C.P. Bhunu, S. Mushayabasa, J.M. Hyman,
Modelling HIV/AIDS and monkeypox co-infection,
2012,
218,
00963003,
9504,
10.1016/j.amc.2012.03.042
|
|
386.
|
Mini Ghosh,
2020,
Chapter 4,
978-981-15-0421-1,
33,
10.1007/978-981-15-0422-8_4
|
|
387.
|
Yali Yang, Xiuchao Song, Yuzhou Wang, Guoyun Luo,
2012,
Chapter 32,
978-3-642-31587-9,
244,
10.1007/978-3-642-31588-6_32
|
|
388.
|
Rebecca H. Chisholm, Mark M. Tanaka,
The emergence of latent infection in the early evolution of
Mycobacterium tuberculosis
,
2016,
283,
0962-8452,
20160499,
10.1098/rspb.2016.0499
|
|
389.
|
Z. Mukandavire, A. Tripathi, C. Chiyaka, G. Musuka, F. Nyabadza, H. G. Mwambi,
Modelling and Analysis of the Intrinsic Dynamics of Cholera,
2011,
19,
0971-3514,
253,
10.1007/s12591-011-0087-1
|
|
390.
|
Kanica Goel, ,
Stability behavior of a nonlinear mathematical epidemic transmission model with time delay,
2019,
98,
0924-090X,
1501,
10.1007/s11071-019-05276-z
|
|
391.
|
Amir Khan, Rahat Zarin, Ghulam Hussain, Noor Atinah Ahmad, Mohd Hafiz Mohd, Abdullahi Yusuf,
Stability analysis and optimal control of covid-19 with convex incidence rate in Khyber Pakhtunkhawa (Pakistan),
2021,
20,
22113797,
103703,
10.1016/j.rinp.2020.103703
|
|
392.
|
Diana M. Thomas, Marion Weedermann, Bernard F. Fuemmeler, Corby K. Martin, Nikhil V. Dhurandhar, Carl Bredlau, Steven B. Heymsfield, Eric Ravussin, Claude Bouchard,
Dynamic model predicting overweight, obesity, and extreme obesity prevalence trends,
2014,
22,
19307381,
590,
10.1002/oby.20520
|
|
393.
|
K. U. Egeonu, A. Omame, S. C. Inyama,
A co-infection model for two-strain Malaria and Cholera with optimal control,
2021,
2195-268X,
10.1007/s40435-020-00748-2
|
|
394.
|
Toni Bakhtiar,
Control Policy Mix in Measles Transmission Dynamics Using Vaccination, Therapy, and Treatment,
2020,
2020,
0161-1712,
1,
10.1155/2020/1561569
|
|
395.
|
Hyun M Yang, Silvia M Raimundo,
Assessing the effects of multiple infections and long latency in the dynamics of tuberculosis,
2010,
7,
1742-4682,
10.1186/1742-4682-7-41
|
|
396.
|
Marguerite Robinson, Nikolaos I. Stilianakis,
A model for the emergence of drug resistance in the presence of asymptomatic infections,
2013,
243,
00255564,
163,
10.1016/j.mbs.2013.03.003
|
|
397.
|
David Gerberry, Andrew Philip,
The Effect of the Incidence Function on the Existence of Backward Bifurcation,
2016,
3,
23737867,
10.30707/LiB3.1Gerberry
|
|
398.
|
Pankaj Kumar Tiwari, Sudip Samanta, Jocirei D. Ferreira, Arvind Kumar Misra,
A Mathematical Model for the Effects of Nitrogen and Phosphorus on Algal Blooms,
2019,
29,
0218-1274,
1950129,
10.1142/S0218127419501293
|
|
399.
|
K.O. Okosun, M.A. Khan, E. Bonyah, O.O. Okosun,
Cholera‐schistosomiasis coinfection dynamics,
2019,
40,
0143-2087,
703,
10.1002/oca.2507
|
|
400.
|
Huitao Zhao, Yunxian Dai, Yiping Lin,
2012,
Qualitative Analysis of an SEIR Model with Varying Total Population Size and Vaccination,
978-1-4673-2825-8,
104,
10.1109/IWCFTA.2012.31
|
|
401.
|
Bruno Buonomo,
Analysis of a malaria model with mosquito host choice and bed-net control,
2015,
08,
1793-5245,
1550077,
10.1142/S1793524515500771
|
|
402.
|
Yali Yang, Chenping Guo, Luju Liu, Tianhua Zhang, Weiping Liu,
Seasonality Impact on the Transmission Dynamics of Tuberculosis,
2016,
2016,
1748-670X,
1,
10.1155/2016/8713924
|
|
403.
|
J. Mushanyu, F. Nyabadza, G. Muchatibaya, A. G. R. Stewart,
Modelling Drug Abuse Epidemics in the Presence of Limited Rehabilitation Capacity,
2016,
78,
0092-8240,
2364,
10.1007/s11538-016-0218-5
|
|
404.
|
Sandeep Sharma, Nitu Kumari,
Backward Bifurcation in a Cholera Model: A Case Study of Outbreak in Zimbabwe and Haiti,
2017,
27,
0218-1274,
1750170,
10.1142/S021812741750170X
|
|
405.
|
E. Iboi, K. Okuneye, O. Sharomi, A. B. Gumel,
Comments on “A Mathematical Study to Control Visceral Leishmaniasis: An Application to South Sudan”,
2018,
80,
0092-8240,
825,
10.1007/s11538-018-0403-9
|
|
406.
|
Mo'tassem Al-Arydah, Robert J. Smith, Frithjof Lutscher,
Modeling Gender-Structured Wildlife Diseases with Harvesting: Chronic Wasting Disease as an Example,
2012,
2012,
2090-7702,
1,
10.5402/2012/802450
|
|
407.
|
S. Mushayabasa, C. P. Bhunu,
Modeling the impact of early therapy for latent tuberculosis patients and its optimal control analysis,
2013,
39,
0092-0606,
723,
10.1007/s10867-013-9328-6
|
|
408.
|
F. B. Agusto, J. Cook, P. D. Shelton, M. G. Wickers,
Mathematical Model of MDR-TB and XDR-TB with Isolation and Lost to Follow-Up,
2015,
2015,
1085-3375,
1,
10.1155/2015/828461
|
|
409.
|
A. Marasco, F. Giannino, A. Iuorio,
Modelling competitive interactions and plant–soil feedback in vegetation dynamics,
2020,
69,
0035-5038,
553,
10.1007/s11587-020-00497-6
|
|
410.
|
Winfried Just, Joan Saldaña, Ying Xin,
Oscillations in epidemic models with spread of awareness,
2018,
76,
0303-6812,
1027,
10.1007/s00285-017-1166-x
|
|
411.
|
Jae Hun Jung, Anna Park, Il Hyo Jung,
Qualitative and Sensitivity Analysis of the Effect of Electronic Cigarettes on Smoking Cessation,
2018,
2018,
1748-670X,
1,
10.1155/2018/3738584
|
|
412.
|
Abhishek Kumar, ,
Dynamical Model of Epidemic Along with Time Delay; Holling Type II Incidence Rate and Monod–Haldane Type Treatment Rate,
2019,
27,
0971-3514,
299,
10.1007/s12591-018-0424-8
|
|
413.
|
Ding Fang, Yongxin Zhang, Wendi Wang,
Complex Behaviors of Epidemic Model with Nonlinear Rewiring Rate,
2020,
2020,
1076-2787,
1,
10.1155/2020/7310347
|
|
414.
|
Hai-Feng Huo, Shuai-Jun Dang, Yu-Ning Li,
Stability of a Two-Strain Tuberculosis Model with General Contact Rate,
2010,
2010,
1085-3375,
1,
10.1155/2010/293747
|
|
415.
|
Roumen Anguelov, Kenneth Dukuza, Jean M.-S. Lubuma,
Backward bifurcation analysis for two continuous and discrete epidemiological models,
2018,
41,
01704214,
8784,
10.1002/mma.5138
|
|
416.
|
D. P. Moualeu, S. Bowong, B. Tsanou, A. Temgoua,
A patchy model for the transmission dynamics of tuberculosis in sub-Saharan Africa,
2018,
6,
2195-268X,
122,
10.1007/s40435-017-0310-1
|
|
417.
|
A. Omame, D. Okuonghae, S. C. Inyama,
2020,
Chapter 4,
978-981-15-2285-7,
107,
10.1007/978-981-15-2286-4_4
|
|
418.
|
Ashrafi M. Niger, Abba B. Gumel,
Mathematical analysis of the role of repeated exposure on malaria transmission dynamics,
2008,
16,
0971-3514,
251,
10.1007/s12591-008-0015-1
|
|
419.
|
Sk Shahid Nadim, Joydev Chattopadhyay,
Occurrence of backward bifurcation and prediction of disease transmission with imperfect lockdown: A case study on COVID-19,
2020,
140,
09600779,
110163,
10.1016/j.chaos.2020.110163
|
|
420.
|
Winston Garira, Dephney Mathebula, Rendani Netshikweta,
A mathematical modelling framework for linked within-host and between-host dynamics for infections with free-living pathogens in the environment,
2014,
256,
00255564,
58,
10.1016/j.mbs.2014.08.004
|
|
421.
|
Ahmed A Mohsen, Hassan Fadhil AL-Husseiny, Xueyong Zhou, Khalid Hattaf,
Global stability of COVID-19 model involving the quarantine strategy and media coverage effects,
2020,
7,
2327-8994,
587,
10.3934/publichealth.2020047
|
|
422.
|
Jinhui Zhang, Yong Li, Xinan Zhang,
Mathematical modeling of tuberculosis data of China,
2015,
365,
00225193,
159,
10.1016/j.jtbi.2014.10.019
|
|
423.
|
Berge Tsanou, Jean Mbaro Saman Lubuma, Arsène Jaurès Ouemba Tassé, Hervé Michel Tenkam,
Dynamics of host-reservoir transmission of Ebola with spillover potential to humans,
2018,
14173875,
1,
10.14232/ejqtde.2018.1.14
|
|
424.
|
Muntaser Safan, Hans Heesterbeek, Klaus Dietz,
The minimum effort required to eradicate infections in models with backward bifurcation,
2006,
53,
0303-6812,
703,
10.1007/s00285-006-0028-8
|
|
425.
|
S. D. Hove-Musekwa, F. Nyabadza, H. Mambili-Mamboundou,
Modelling Hospitalization, Home-Based Care, and Individual Withdrawal for People Living with HIV/AIDS in High Prevalence Settings,
2011,
73,
0092-8240,
2888,
10.1007/s11538-011-9651-7
|
|
426.
|
M. Maliyoni, P. M. M. Mwamtobe, S. D. Hove-Musekwa, J. M. Tchuenche,
Modelling the Role of Diagnosis, Treatment, and Health Education on Multidrug-Resistant Tuberculosis Dynamics,
2012,
2012,
2090-7702,
1,
10.5402/2012/459829
|
|
427.
|
Calistus N. Ngonghala, Sara Y. Del Valle, Ruijun Zhao, Jemal Mohammed-Awel,
Quantifying the impact of decay in bed-net efficacy on malaria transmission,
2014,
363,
00225193,
247,
10.1016/j.jtbi.2014.08.018
|
|
428.
|
Kanica Goel, ,
A mathematical and numerical study of a SIR epidemic model with time delay, nonlinear incidence and treatment rates,
2019,
138,
1431-7613,
203,
10.1007/s12064-019-00275-5
|
|
429.
|
A. Oumar Bah, M. Lam, A. Bah, S. Bowong,
Theoretical assessment of the impact of desert aerosols on the dynamical transmission of meningitidis serogroup A,
2019,
12,
1793-5245,
1950060,
10.1142/S1793524519500608
|
|
430.
|
Abhishek Kumar, Raj Kishor,
A short study of an SIR model with inclusion of an alert class, two explicit nonlinear incidence rates and saturated treatment rate,
2019,
76,
2254-3902,
505,
10.1007/s40324-019-00189-8
|
|
431.
|
Joshua Kiddy K. Asamoah, Farai Nyabadza, Zhen Jin, Ebenezer Bonyah, Muhammad Altaf Khan, Michael Y. Li, Tasawar Hayat,
Backward bifurcation and sensitivity analysis for bacterial meningitis transmission dynamics with a nonlinear recovery rate,
2020,
140,
09600779,
110237,
10.1016/j.chaos.2020.110237
|
|
432.
|
Bruno Buonomo, Marianna Cerasuolo,
Stability and bifurcation in plant–pathogens interactions,
2014,
232,
00963003,
858,
10.1016/j.amc.2014.01.127
|
|
433.
|
Berhe Nerea Kahsay, Semu Mitiku Kassa, Yibeltal Adane Terefe,
New intervention model to eliminate the spread of trachoma in hyper-endemic community: Based on a mathematical model,
2021,
90,
0307904X,
568,
10.1016/j.apm.2020.09.013
|
|
434.
|
Seraphin Djaoue, Gabriel Guilsou Kolaye, Hamadjam Abboubakar, Ado Adamou Abba Ari, Irepran Damakoa,
Mathematical modeling, analysis and numerical simulation of the COVID-19 transmission with mitigation of control strategies used in Cameroon,
2020,
139,
09600779,
110281,
10.1016/j.chaos.2020.110281
|
|
435.
|
S.A. Pedro, J.M. Tchuenche,
HIV/AIDS dynamics: Impact of economic classes with transmission from poor clinical settings,
2010,
267,
00225193,
471,
10.1016/j.jtbi.2010.09.019
|
|
436.
|
C. P. Bhunu, S. Mushayabasa,
Transmission Dynamics of Lymphatic Filariasis: A Mathematical Approach,
2012,
2012,
2090-7702,
1,
10.5402/2012/930130
|
|
437.
|
Hyacinthe M. Ndongmo Teytsa, Berge Tsanou, Samuel Bowong, Jean Lubuma,
Coupling the modeling of phage-bacteria interaction and cholera epidemiological model with and without optimal control,
2021,
512,
00225193,
110537,
10.1016/j.jtbi.2020.110537
|
|
438.
|
A. O. Egonmwan, D. Okuonghae,
Analysis of a mathematical model for tuberculosis with diagnosis,
2019,
59,
1598-5865,
129,
10.1007/s12190-018-1172-1
|
|
439.
|
Muhammad Altaf Khan, Rizwan Khan, Yasir Khan, Saeed Islam,
A mathematical analysis of Pine Wilt disease with variable population size and optimal control strategies,
2018,
108,
09600779,
205,
10.1016/j.chaos.2018.02.002
|
|
440.
|
C. Hameni Nkwayep, S. Bowong, J.J. Tewa, J. Kurths,
Short-term forecasts of the COVID-19 pandemic: a study case of Cameroon,
2020,
140,
09600779,
110106,
10.1016/j.chaos.2020.110106
|
|
441.
|
Carlos W. Castillo-Garsow, Carlos Castillo-Chavez,
2020,
Chapter 2,
978-3-030-33644-8,
87,
10.1007/978-3-030-33645-5_2
|
|
442.
|
S. Athithan, Mini Ghosh,
Mathematical modelling of TB with the effects of case detection and treatment,
2013,
1,
2195-268X,
223,
10.1007/s40435-013-0020-2
|
|
443.
|
A Fitriyani, ,
Stability analysis of mathematical model (sirb) in the spread of cholera with vaccination and disinfection,
2020,
1524,
1742-6588,
012053,
10.1088/1742-6596/1524/1/012053
|
|
444.
|
SOPHIA R.-J. JANG, JAMES BAGLAMA, LI WU,
RANDOM DISPERSAL IN A PREDATOR-PREY-PARASITE SYSTEM,
2010,
18,
0218-3390,
825,
10.1142/S0218339010003536
|
|
445.
|
Mohammad A. Safi, Abba B. Gumel,
Mathematical analysis of a disease transmission model with quarantine, isolation and an imperfect vaccine,
2011,
61,
08981221,
3044,
10.1016/j.camwa.2011.03.095
|
|
446.
|
Krishna pada Das, Kusumika Kundu, J. Chattopadhyay,
A predator–prey mathematical model with both the populations affected by diseases,
2011,
8,
1476945X,
68,
10.1016/j.ecocom.2010.04.001
|
|
447.
|
D. Okuonghae,
Lyapunov functions and global properties of some tuberculosis models,
2015,
48,
1598-5865,
421,
10.1007/s12190-014-0811-4
|
|
448.
|
Schehrazad Selmane,
2011,
Chapter 43,
978-3-642-21933-7,
527,
10.1007/978-3-642-21934-4_43
|
|
449.
|
B. Buonomo, A. Giacobbe, G. Mulone,
Analysis of an epidemic model with peer-pressure and information-dependent transmission with high-order distributed delay,
2019,
68,
0035-5038,
453,
10.1007/s11587-018-0419-3
|
|
450.
|
Yan Wu, Meng Huang, Ximei Wang, Yong Li, Lei Jiang, Yuan Yuan,
The prevention and control of tuberculosis: an analysis based on a tuberculosis dynamic model derived from the cases of Americans,
2020,
20,
1471-2458,
10.1186/s12889-020-09260-w
|
|
451.
|
Abhishek Kumar, ,
Mathematical analysis of a delayed epidemic model with nonlinear incidence and treatment rates,
2019,
115,
0022-0833,
1,
10.1007/s10665-019-09989-3
|
|
452.
|
Chittaranjan Mondal, Debadatta Adak, Abhijit Majumder, Nandadulal Bairagi,
Mitigating the transmission of infection and death due to SARS-CoV-2 through non-pharmaceutical interventions and repurposing drugs,
2020,
00190578,
10.1016/j.isatra.2020.09.015
|
|
453.
|
S. Mushayabasa, C. P. Bhunu,
Modeling Schistosomiasis and HIV/AIDS Codynamics,
2011,
2011,
1748-670X,
1,
10.1155/2011/846174
|
|
454.
|
O. Sharomi, C.N. Podder, A.B. Gumel, E.H. Elbasha, James Watmough,
Role of incidence function in vaccine-induced backward bifurcation in some HIV models,
2007,
210,
00255564,
436,
10.1016/j.mbs.2007.05.012
|
|
455.
|
Ahmed Abdelrazec, Jacques Bélair, Chunhua Shan, Huaiping Zhu,
Modeling the spread and control of dengue with limited public health resources,
2016,
271,
00255564,
136,
10.1016/j.mbs.2015.11.004
|
|
456.
|
Mini Ghosh, Abid Ali Lashari, Xue-Zhi Li,
Biological control of malaria: A mathematical model,
2013,
219,
00963003,
7923,
10.1016/j.amc.2013.02.053
|
|
457.
|
Andrew Omame, Daniel Okuonghae,
A co‐infection model for oncogenic human papillomavirus and tuberculosis with optimal control and Cost‐Effectiveness Analysis,
2021,
0143-2087,
10.1002/oca.2717
|
|
458.
|
Bruno Buonomo, Deborah Lacitignola,
Modeling peer influence effects on the spread of high–risk alcohol consumption behavior,
2014,
63,
0035-5038,
101,
10.1007/s11587-013-0167-3
|
|
459.
|
Kinfe Hailemariam Hntsa, Berhe Nerea Kahsay,
Analysis of Cholera Epidemic Controlling Using Mathematical Modeling,
2020,
2020,
0161-1712,
1,
10.1155/2020/7369204
|
|
460.
|
Ihsan Ullah, Saeed Ahmad, Qasem Al-Mdallal, Zareen A. Khan, Hasib Khan, Aziz Khan,
Stability analysis of a dynamical model of tuberculosis with incomplete treatment,
2020,
2020,
1687-1847,
10.1186/s13662-020-02950-0
|
|
461.
|
Yanyuan Xing, Zhiming Guo, Jian Liu,
Backward bifurcation in a malaria transmission model,
2020,
14,
1751-3758,
368,
10.1080/17513758.2020.1771443
|
|
462.
|
Xueyong Zhou, Jingan Cui,
Analysis of stability and bifurcation for an SEIR epidemic model with saturated recovery rate,
2011,
16,
10075704,
4438,
10.1016/j.cnsns.2011.03.026
|
|
463.
|
K.O. Okosun, O.D. Makinde,
A co-infection model of malaria and cholera diseases with optimal control,
2014,
258,
00255564,
19,
10.1016/j.mbs.2014.09.008
|
|
464.
|
D Lestari, A Dhoruri, E R Sari,
An epidemic model of tuberculosis with vaccine control in Yogyakarta region Indonesia,
2018,
1132,
1742-6588,
012022,
10.1088/1742-6596/1132/1/012022
|
|
465.
|
Rui Xu, Junyuan Yang, Xiaohong Tian, Jiazhe Lin,
Global dynamics of a tuberculosis model with fast and slow progression and age-dependent latency and infection,
2019,
13,
1751-3758,
675,
10.1080/17513758.2019.1683628
|
|
466.
|
A. Ssematimba, J. N. Nakakawa, J. Ssebuliba, J. Y. T. Mugisha,
Mathematical model for COVID-19 management in crowded settlements and high-activity areas,
2021,
2195-268X,
10.1007/s40435-021-00781-9
|
|
467.
|
Swarnali Sharma, G. P. Samanta,
A ratio-dependent predator-prey model with Allee effect and disease in prey,
2015,
47,
1598-5865,
345,
10.1007/s12190-014-0779-0
|
|
468.
|
F.B. Agusto, A.B. Gumel,
Qualitative dynamics of lowly- and highly-pathogenic avian influenza strains,
2013,
243,
00255564,
147,
10.1016/j.mbs.2013.02.001
|
|
469.
|
Manotosh Mandal, Soovoojeet Jana, Anupam Khatua, T. K. Kar,
Modeling and control of COVID-19: A short-term forecasting in the context of India,
2020,
30,
1054-1500,
113119,
10.1063/5.0015330
|
|
470.
|
Liang'an Huo, Peiqing Huang, Chun-xiang Guo,
Analyzing the Dynamics of a Rumor Transmission Model with Incubation,
2012,
2012,
1026-0226,
1,
10.1155/2012/328151
|
|
471.
|
Yali Yang, Sanyi Tang, Xiaohong Ren, Huiwen Zhao, Chenping Guo,
Global stability and optimal control for a tuberculosis model with vaccination and treatment,
2016,
21,
1531-3492,
1009,
10.3934/dcdsb.2016.21.1009
|
|
472.
|
Rajivganthi Chinnathambi, Fathalla A. Rihan, Hebatallah J. Alsakaji,
A fractional‐order model with time delay for tuberculosis with endogenous reactivation and exogenous reinfections,
2019,
0170-4214,
10.1002/mma.5676
|
|
473.
|
Hasifa Nampala, Livingstone S. Luboobi, Joseph Y.T. Mugisha, Celestino Obua,
Mathematical modeling of liver enzyme elevation in HIV mono-infection,
2013,
242,
00255564,
77,
10.1016/j.mbs.2012.12.005
|
|
474.
|
Sandeep Sharma, Nitu Kumari,
Why to consider environmental pollution in cholera modeling?,
2017,
40,
01704214,
6348,
10.1002/mma.4461
|
|
475.
|
Hasim A. Obaid, Rachid Ouifki, Kailash C. Patidar,
A nonstandard finite difference method for solving a mathematical model of HIV-TB co-infection,
2017,
23,
1023-6198,
1105,
10.1080/10236198.2017.1318859
|
|
476.
|
BANAMALI MAJI, PANKAJ KUMAR TIWARI, SUDIP SAMANTA, SAMARES PAL, FRANCESCA BONA,
EFFECT OF TIME DELAY IN A CANNIBALISTIC STAGE-STRUCTURED PREDATOR–PREY MODEL WITH HARVESTING OF AN ADULT PREDATOR: THE CASE OF LIONFISH,
2019,
27,
0218-3390,
447,
10.1142/S0218339019500189
|
|
477.
|
Mehdi Lotfi, Azizeh Jabbari, Hossein Kheiri,
A mathematical analysis of a tuberculosis epidemic model with two treatments and exogenous re-infection,
2020,
13,
1793-5245,
2050082,
10.1142/S1793524520500825
|
|
478.
|
Muhammad Rifki Taufik, Dwi Lestari, Tri Wijayanti Septiarini,
Mathematical Model for Vaccinated Tuberculosis Disease with VEIT Model,
2015,
5,
20103697,
192,
10.7763/IJMO.2015.V5.460
|
|
479.
|
Kamaldeen Okuneye, Steffen E. Eikenberry, Abba B. Gumel,
Weather-driven malaria transmission model with gonotrophic and sporogonic cycles,
2019,
13,
1751-3758,
288,
10.1080/17513758.2019.1570363
|
|
480.
|
Mohsen Jafari, Hossein Kheiri, Azizeh Jabbari,
Backward bifurcation in a fractional-order and two-patch model of tuberculosis epidemic with incomplete treatment,
2021,
14,
1793-5245,
2150007,
10.1142/S1793524521500078
|
|
481.
|
Hong Xiang, Cheng-Cheng Zhu, Hai-Feng Huo,
Modelling the effect of immigration on drinking behaviour,
2017,
11,
1751-3758,
275,
10.1080/17513758.2017.1337243
|
|
482.
|
J. Mushanyu, F. Nyabadza,
A Risk-Structured Model for Understanding the Spread of Drug Abuse,
2018,
4,
2349-5103,
10.1007/s40819-018-0495-9
|
|
483.
|
Muhammad Altaf Khan, Yasir Khan, Saeed Islam,
Complex dynamics of an SEIR epidemic model with saturated incidence rate and treatment,
2018,
493,
03784371,
210,
10.1016/j.physa.2017.10.038
|
|
484.
|
Marcin Choiński, Mariusz Bodzioch, Urszula Foryś,
Simple criss-cross model of epidemic for heterogeneous populations,
2019,
79,
10075704,
104920,
10.1016/j.cnsns.2019.104920
|
|
485.
|
Sangeeta Saha, G. P. Samanta,
Modelling the role of optimal social distancing on disease prevalence of COVID-19 epidemic,
2020,
2195-268X,
10.1007/s40435-020-00721-z
|
|
486.
|
Mauricio Herrera, Paul Bosch, Manuel Nájera, Ximena Aguilera,
Modeling the Spread of Tuberculosis in Semiclosed Communities,
2013,
2013,
1748-670X,
1,
10.1155/2013/648291
|
|
487.
|
Berge Tsanou, Samuel Bowong, Jean Lubuma, Joseph Mbang,
Assessing the impact of the environmental contamination on the transmission of Ebola virus disease (EVD),
2017,
55,
1598-5865,
205,
10.1007/s12190-016-1033-8
|
|
488.
|
Semu Mitiku Kassa, Aziz Ouhinou,
Epidemiological models with prevalence dependent endogenous self-protection measure,
2011,
229,
00255564,
41,
10.1016/j.mbs.2010.10.007
|
|
489.
|
D. Okuonghae, A.B. Gumel, M.A. Safi,
Dynamics of a two-strain vaccination model for polio,
2015,
25,
14681218,
167,
10.1016/j.nonrwa.2015.04.002
|
|
490.
|
N. J. Malunguza, S. D. Hove-Musekwa, G. Musuka, Z. Mukandavire,
Investigating Alcohol Consumption as a Risk Factor for HIV Transmission in Heterosexual Settings in Sub-Saharan African Communities,
2012,
74,
0092-8240,
2094,
10.1007/s11538-012-9747-8
|
|
491.
|
Rubayyi T. Alqahtani,
Mathematical model of SIR epidemic system (COVID-19) with fractional derivative: stability and numerical analysis,
2021,
2021,
1687-1847,
10.1186/s13662-020-03192-w
|
|
492.
|
Stéphane Verguet, Ramanan Laxminarayan, Dean T. Jamison,
Universal Public Finance of Tuberculosis Treatment in India: An Extended Cost‐Effectiveness Analysis,
2015,
24,
1057-9230,
318,
10.1002/hec.3019
|
|
493.
|
C. S. Bornaa, Baba Seidu, M. I. Daabo,
Mathematical Analysis of Rabies Infection,
2020,
2020,
1110-757X,
1,
10.1155/2020/1804270
|
|
494.
|
Qiang Hou, Xiang-Dong Sun,
Modeling sheep brucellosis transmission with a multi-stage model in Changling County of Jilin Province, China,
2016,
51,
1598-5865,
227,
10.1007/s12190-015-0901-y
|
|
495.
|
Enahoro A. Iboi, Abba B. Gumel,
Mathematical assessment of the role of Dengvaxia vaccine on the transmission dynamics of dengue serotypes,
2018,
304,
00255564,
25,
10.1016/j.mbs.2018.07.003
|
|
496.
|
Maia Martcheva,
2015,
Chapter 7,
978-1-4899-7611-6,
149,
10.1007/978-1-4899-7612-3_7
|
|
497.
|
S.M. Garba, M.A. Safi, A.B. Gumel,
Cross-immunity-induced backward bifurcation for a model of transmission dynamics of two strains of influenza,
2013,
14,
14681218,
1384,
10.1016/j.nonrwa.2012.10.003
|
|
498.
|
Ebenezer Bonyah, Muhammad Altaf Khan, K. O. Okosun, Saeed Islam, Lars Kaderali,
A theoretical model for Zika virus transmission,
2017,
12,
1932-6203,
e0185540,
10.1371/journal.pone.0185540
|
|
499.
|
Pankaj Kumar Tiwari, Sudip Samanta, Francesca Bona, Ezio Venturino, Arvind Kumar Misra,
The time delays influence on the dynamical complexity of algal blooms in the presence of bacteria,
2019,
39,
1476945X,
100769,
10.1016/j.ecocom.2019.100769
|
|
500.
|
S. Usaini, A. S. Hassan, S. M. Garba, JM-S. Lubuma,
Modeling the transmission dynamics of the Middle East Respiratory Syndrome Coronavirus (MERS-CoV) with latent immigrants,
2019,
22,
0972-0502,
903,
10.1080/09720502.2019.1692429
|
|
501.
|
Tahir Khan, Saeed Ahmad, Gul Zaman,
Modeling and qualitative analysis of a hepatitis B epidemic model,
2019,
29,
1054-1500,
103139,
10.1063/1.5111699
|
|
502.
|
Elias M. Adamu, Kailash C. Patidar, Andriamihaja Ramanantoanina,
An unconditionally stable nonstandard finite difference method to solve a mathematical model describing Visceral Leishmaniasis,
2021,
187,
03784754,
171,
10.1016/j.matcom.2021.02.007
|
|
503.
|
Mathematical modelling and control of echinococcus in Qinghai province, China,
2013,
10,
1551-0018,
425,
10.3934/mbe.2013.10.425
|
|
504.
|
Faraimunashe Chirove, Edy Soewono, Nuning Nuraini,
Analysis of Combined Langerhans and CD$4^+$ T Cells HIV Infection,
2014,
74,
0036-1399,
1174,
10.1137/130916813
|
|
505.
|
John O. Akanni, Samson Olaniyi, Folake O. Akinpelu,
Global asymptotic dynamics of a nonlinear illicit drug use system,
2020,
1598-5865,
10.1007/s12190-020-01423-7
|
|
506.
|
A. Al-khedhairi, A. A. Elsadany, A. Elsonbaty, A. G. Abdelwahab,
Dynamical study of a chaotic predator-prey model with an omnivore,
2018,
133,
2190-5444,
10.1140/epjp/i2018-11864-8
|
|
507.
|
Deen L. Garba, Salisu M. Garba, Abba B. Gumel, Oluwaseun Sharomi,
Mathematics of FIV and BTB dynamics in buffalo and lion populations at Kruger National Park,
2018,
41,
01704214,
8697,
10.1002/mma.5065
|
|
508.
|
Jacob B. Aguilar, Juan B. Gutierrez,
An Epidemiological Model of Malaria Accounting for Asymptomatic Carriers,
2020,
82,
0092-8240,
10.1007/s11538-020-00717-y
|
|
509.
|
Wenjing Zhang,
Analysis of an in-host tuberculosis model for disease control,
2020,
99,
08939659,
105983,
10.1016/j.aml.2019.07.014
|
|
510.
|
Calistus N. Ngonghala, Jemal Mohammed-Awel, Ruijun Zhao, Olivia Prosper,
Interplay between insecticide-treated bed-nets and mosquito demography: implications for malaria control,
2016,
397,
00225193,
179,
10.1016/j.jtbi.2016.03.003
|
|
511.
|
Abhijit Majumder, Debadatta Adak, Nandadulal Bairagi,
Persistence and extinction criteria of Covid-19 pandemic: India as a case study,
2021,
0736-2994,
1,
10.1080/07362994.2021.1894172
|
|
512.
|
SAMUEL BOWONG, JURGEN KURTHS,
MODELING AND PARAMETER ESTIMATION OF TUBERCULOSIS WITH APPLICATION TO CAMEROON,
2011,
21,
0218-1274,
1999,
10.1142/S0218127411029598
|
|
513.
|
Salisu M. Garba, Usman A. Danbaba, Jacek Banasiak,
Modeling the effect of temperature variability on malaria control strategies,
2020,
15,
0973-5348,
65,
10.1051/mmnp/2020044
|
|
514.
|
Hai-Feng Huo, Xiang-Ming Zhang,
Complex dynamics in an alcoholism model with the impact of Twitter,
2016,
281,
00255564,
24,
10.1016/j.mbs.2016.08.009
|
|
515.
|
Sylvie Diane Djiomba Njankou, Farai Nyabadza,
Modelling the potential impact of limited hospital beds on Ebola virus disease dynamics,
2018,
41,
01704214,
8528,
10.1002/mma.4789
|
|
516.
|
Yibeltal Adane Terefe, Semu Mitiku Kassa,
Analysis of a mathematical model for the transmission dynamics of human melioidosis,
2020,
13,
1793-5245,
2050062,
10.1142/S179352452050062X
|
|
517.
|
Haileyesus Tessema Alemneh, Negesse Yizengaw Alemu,
Mathematical modeling with optimal control analysis of social media addiction,
2021,
6,
24680427,
405,
10.1016/j.idm.2021.01.011
|
|
518.
|
Baba Seidu, C.S. Bornaa, Oluwole D. Makinde,
An Ebola model with hyper-susceptibility,
2020,
138,
09600779,
109938,
10.1016/j.chaos.2020.109938
|
|
519.
|
Sachin Kumar, Shikha Jain,
Assessing the effects of treatment in HIV-TB co-infection model,
2018,
133,
2190-5444,
10.1140/epjp/i2018-12117-8
|
|
520.
|
Dhiraj Kumar Das, Subhas Khajanchi, T.K. Kar,
The impact of the media awareness and optimal strategy on the prevalence of tuberculosis,
2020,
366,
00963003,
124732,
10.1016/j.amc.2019.124732
|
|
521.
|
A. Mhlanga,
A mathematical approach to Xenophobia: The case of South Africa,
2021,
110,
01654896,
44,
10.1016/j.mathsocsci.2021.02.001
|
|
522.
|
H. Abboubakar, B. Buonomo, N. Chitnis,
Modelling the effects of malaria infection on mosquito biting behaviour and attractiveness of humans,
2016,
65,
0035-5038,
329,
10.1007/s11587-016-0293-9
|
|
523.
|
Marilyn Ronoh, Faraimunashe Chirove, Sansao A. Pedro, Milaine Sergine Seuneu Tchamga, Chinwendu Emilian Madubueze, Sunday C. Madubueze, Joel Addawe, Peter Mpasho Mwamtobe, Kouassi Richard Mbra,
Modelling the spread of schistosomiasis in humans with environmental transmission,
2021,
95,
0307904X,
159,
10.1016/j.apm.2021.01.046
|
|
524.
|
Carla M.A. Pinto, Ana R.M. Carvalho,
Diabetes mellitus and TB co-existence: Clinical implications from a fractional order modelling,
2019,
68,
0307904X,
219,
10.1016/j.apm.2018.11.029
|
|
525.
|
E. Iboi, D. Okuonghae,
Population dynamics of a mathematical model for syphilis,
2016,
40,
0307904X,
3573,
10.1016/j.apm.2015.09.090
|
|
526.
|
S. Olaniyi, K. O. Okosun, S. O. Adesanya, R. S. Lebelo,
Modelling malaria dynamics with partial immunity and protected travellers: optimal control and cost-effectiveness analysis,
2020,
14,
1751-3758,
90,
10.1080/17513758.2020.1722265
|
|
527.
|
S. F. Abimbade, S. Olaniyi, O. A. Ajala, M. O. Ibrahim,
Optimal control analysis of a tuberculosis model with exogenous re‐infection and incomplete treatment,
2020,
41,
0143-2087,
2349,
10.1002/oca.2658
|
|
528.
|
Shasha Gao, Maia Martcheva, Hongyu Miao, Libin Rong,
A Dynamic Model to Assess Human Papillomavirus Vaccination Strategies in a Heterosexual Population Combined with Men Who have Sex with Men,
2021,
83,
0092-8240,
10.1007/s11538-020-00830-y
|
|
529.
|
Xue-Zhi Li, Sha-Sha Gao, Maia Martcheva,
Modeling and Control of Malaria When Mosquitoes Are Used as Vaccinators,
2015,
22,
0889-8480,
145,
10.1080/08898480.2014.925322
|
|
530.
|
Ahmed Abdelrazec, Suzanne Lenhart, Huaiping Zhu,
Transmission dynamics of West Nile virus in mosquitoes and corvids and non-corvids,
2014,
68,
0303-6812,
1553,
10.1007/s00285-013-0677-3
|
|
531.
|
Saif Ullah, Muhammad Farooq Khan, Syed Azhar Ali Shah, Muhammad Farooq, Muhammad Altaf Khan, Mustafa bin Mamat,
Optimal control analysis of vector-host model with saturated treatment,
2020,
135,
2190-5444,
10.1140/epjp/s13360-020-00855-1
|
|
532.
|
Sylvie Diane Djiomba Njankou, Farai Nyabadza,
Modelling the Potential Role of Media Campaigns in Ebola Transmission Dynamics,
2017,
2017,
1687-9643,
1,
10.1155/2017/3758269
|
|
533.
|
Akhil Kumar Srivastav, Naba Kumar Goswami, Mini Ghosh, Xue-Zhi Li,
Modeling and optimal control analysis of Zika virus with media impact,
2018,
6,
2195-268X,
1673,
10.1007/s40435-018-0416-0
|
|
534.
|
Peter Mpasho Mwamtobe, Simphiwe Mpumelelo Simelane, Shirley Abelman, Jean Michel Tchuenche,
Optimal control of intervention strategies in malaria–tuberculosis co-infection with relapse,
2018,
11,
1793-5245,
1850017,
10.1142/S1793524518500171
|
|
535.
|
Parastu Kasaie, David W. Dowdy, W. David Kelton,
2013,
An agent-based simulation of a Tuberculosis epidemic: Understanding the timing of transmission,
978-1-4799-3950-3,
2227,
10.1109/WSC.2013.6721599
|
|
536.
|
Nibiao Zheng, Christopher C. Whalen, Andreas Handel, Sebastien Gagneux,
Modeling the Potential Impact of Host Population Survival on the Evolution of M. tuberculosis Latency,
2014,
9,
1932-6203,
e105721,
10.1371/journal.pone.0105721
|
|
537.
|
Ibrahim M. ELmojtaba, J.Y.T. Mugisha, Mohsin H.A. Hashim,
Modelling the role of cross-immunity between two different strains of leishmania,
2010,
11,
14681218,
2175,
10.1016/j.nonrwa.2010.01.011
|
|
538.
|
E. T. NGARAKANA-GWASIRA, C. P. BHUNU, S. MUSHAYABASA, S. D. HOVE-MUSEKWA, W. GARIRA, J. M. TCHUENCHE,
EXPLORING THE EFFECTS OF PARAMETER HETEROGENEITY ON THE INTRINSIC DYNAMICS OF HIV/AIDS IN HETEROSEXUAL SETTINGS,
2011,
04,
1793-5245,
75,
10.1142/S1793524511001192
|
|
539.
|
Senelani D. Hove-Musekwa, Farai Nyabadza, Christinah Chiyaka, Prasenjit Das, Agraj Tripathi, Zindoga Mukandavire,
Modelling and analysis of the effects of malnutrition in the spread of cholera,
2011,
53,
08957177,
1583,
10.1016/j.mcm.2010.11.060
|
|
540.
|
A. Omame, D. Okuonghae, R.A. Umana, S.C. Inyama,
Analysis of a co-infection model for HPV-TB,
2020,
77,
0307904X,
881,
10.1016/j.apm.2019.08.012
|
|
541.
|
L. N. Nkamba, J. M. Ntaganda, H. Abboubakar, J. C. Kamgang, Lorenzo Castelli,
Global Stability of a SVEIR Epidemic Model: Application to Poliomyelitis Transmission Dynamics,
2017,
05,
2327-4018,
98,
10.4236/ojmsi.2017.51008
|
|
542.
|
Yali Yang, Jianhong Wu, Jianquan Li, Xiaxia Xu,
Tuberculosis with relapse: A model,
2017,
24,
0889-8480,
3,
10.1080/08898480.2014.998550
|
|
543.
|
Badr-Eddine Berrhazi, Mohamed El Fatini, Roger Pettersson, Aziz Laaribi,
Media effects on the dynamics of a stochastic SIRI epidemic model with relapse and Lévy noise perturbation,
2019,
12,
1793-5245,
1950037,
10.1142/S1793524519500372
|
|
544.
|
Danitza Lukac, Octavio Garaycochea, Alvaro Taype-Rondan, Laura Luque Bustamante, André Mujica-Vasquez, Dario Zamora,
Knowledge and perception about tuberculosis among public transport workers in Lima, Peru,
2016,
16,
07176384,
e6629,
10.5867/medwave.2016.10.6629
|
|
545.
|
Emma White, Catherine Comiskey,
Heroin epidemics, treatment and ODE modelling,
2007,
208,
00255564,
312,
10.1016/j.mbs.2006.10.008
|
|
546.
|
Sandeep Sharma, Nitu Kumari,
2018,
Chapter 51,
978-981-10-5328-3,
673,
10.1007/978-981-10-5329-0_51
|
|
547.
|
Diego S. Silva, Maxwell J. Smith, Cameron D. Norman,
Systems thinking and ethics in public health: a necessary and mutually beneficial partnership,
2018,
36,
1321-2753,
54,
10.1007/s40592-018-0082-1
|
|
548.
|
Redouane Qesmi, Jun Wu, Jianhong Wu, Jane M. Heffernan,
Influence of backward bifurcation in a model of hepatitis B and C viruses,
2010,
224,
00255564,
118,
10.1016/j.mbs.2010.01.002
|
|
549.
|
Swarnali Sharma, G. P. Samanta,
Analysis of a drinking epidemic model,
2015,
3,
2195-268X,
288,
10.1007/s40435-015-0151-8
|
|
550.
|
Criselda P. Libatique, Aprimelle Kris J. Pajimola, Joel M. Addawe,
2017,
1905,
0094-243X,
030023,
10.1063/1.5012169
|
|
551.
|
Indrajit Ghosh, Pankaj Kumar Tiwari, Sandip Mandal, Maia Martcheva, Joydev Chattopadhyay,
A mathematical study to control Guinea worm disease: a case study on Chad,
2018,
12,
1751-3758,
846,
10.1080/17513758.2018.1529829
|
|
552.
|
S. MUSHAYABASA, C. P. BHUNU,
MODELING THE IMPACT OF VOLUNTARY TESTING AND TREATMENT ON TUBERCULOSIS TRANSMISSION DYNAMICS,
2012,
05,
1793-5245,
1250029,
10.1142/S1793524511001726
|
|
553.
|
Guijie Lan, Sanling Yuan, Baojun Song,
The impact of hospital resources and environmental perturbations to the dynamics of SIRS model,
2021,
358,
00160032,
2405,
10.1016/j.jfranklin.2021.01.015
|
|
554.
|
Yali Yang, Jianquan Li, Zhien Ma, Luju Liu,
Global stability of two models with incomplete treatment for tuberculosis,
2010,
43,
09600779,
79,
10.1016/j.chaos.2010.09.002
|
|
555.
|
Binayak S. Choudhury, Bankim Nasipuri,
Efficient virotherapy of cancer in the presence of immune response,
2014,
2,
2195-268X,
314,
10.1007/s40435-013-0035-8
|
|
556.
|
R. Fernández-Peralta, A. Gómez-Corral,
A structured Markov chain model to investigate the effects of pre-exposure vaccines in tuberculosis control,
2021,
509,
00225193,
110490,
10.1016/j.jtbi.2020.110490
|
|
557.
|
T. BERGE, M. CHAPWANYA, J. M.-S. LUBUMA, Y. A. TEREFE,
A MATHEMATICAL MODEL FOR EBOLA EPIDEMIC WITH SELF-PROTECTION MEASURES,
2018,
26,
0218-3390,
107,
10.1142/S0218339018500067
|
|
558.
|
Wencai Zhao, Tongqian Zhang, Zhengbo Chang, Xinzhu Meng, Yulin Liu,
Dynamical Analysis of SIR Epidemic Models with Distributed Delay,
2013,
2013,
1110-757X,
1,
10.1155/2013/154387
|
|
559.
|
Mohamed Helal, Mostafa Adimy, Abdelkader Lakmeche, Laurent Pujo-Menjouet, A. Lakmeche, V. Volpert,
Analysis of mathematical model of leukemia,
2015,
4,
2271-2097,
01005,
10.1051/itmconf/20150401005
|
|
560.
|
Saif Ullah, Muhammad Altaf Khan, Muhammad Farooq, Taza Gul,
Modeling and analysis of Tuberculosis (TB) in Khyber Pakhtunkhwa, Pakistan,
2019,
165,
03784754,
181,
10.1016/j.matcom.2019.03.012
|
|
561.
|
F. Nazari, A.B. Gumel, E.H. Elbasha,
Differential characteristics of primary infection and re-infection can cause backward bifurcation in HCV transmission dynamics,
2015,
263,
00255564,
51,
10.1016/j.mbs.2015.02.002
|
|
562.
|
C. Connell McCluskey,
Global stability for a class of mass action systems allowing for latency in tuberculosis,
2008,
338,
0022247X,
518,
10.1016/j.jmaa.2007.05.012
|
|
563.
|
S. M. Garba, A. B. Gumel,
Effect of cross-immunity on the transmission dynamics of two strains of dengue,
2010,
87,
0020-7160,
2361,
10.1080/00207160802660608
|
|
564.
|
Hong Xiang, Ming-Xuan Zou, Hai-Feng Huo,
Modeling the Effects of Health Education and Early Therapy on Tuberculosis Transmission Dynamics,
2019,
20,
1565-1339,
243,
10.1515/ijnsns-2016-0084
|
|
565.
|
Farinaz Forouzannia, A. Gumel,
Dynamics of an age-structured two-strain model for malaria transmission,
2015,
250,
00963003,
860,
10.1016/j.amc.2014.09.117
|
|
566.
|
Bruno Buonomo, Deborah Lacitignola,
Forces of Infection Allowing for Backward Bifurcation in an Epidemic Model with Vaccination and Treatment,
2012,
0167-8019,
10.1007/s10440-012-9743-x
|
|
567.
|
Steady Mushayabasa, Gift Tapedzesa,
Modeling the Effects of Multiple Intervention Strategies on Controlling Foot-and-Mouth Disease,
2015,
2015,
2314-6133,
1,
10.1155/2015/584234
|
|
568.
|
Olga Vasilyeva, Tamer Oraby, Frithjof Lutscher,
Aggregation and environmental transmission in chronic wasting disease,
2015,
12,
1551-0018,
209,
10.3934/mbe.2015.12.209
|
|
569.
|
Maia Martcheva, Hisashi Inaba,
A Lyapunov–Schmidt method for detecting backward bifurcation in age-structured population models,
2020,
14,
1751-3758,
543,
10.1080/17513758.2020.1785024
|
|
570.
|
Ling Xue, Hongyu Zhang, Wei Sun, Caterina Scoglio,
Transmission dynamics of multi-strain dengue virus with cross-immunity,
2021,
392,
00963003,
125742,
10.1016/j.amc.2020.125742
|
|
571.
|
Junli Liu, Bairu Liu, Pan Lv, Tailei Zhang,
An eco-epidemiological model with fear effect and hunting cooperation,
2021,
142,
09600779,
110494,
10.1016/j.chaos.2020.110494
|
|
572.
|
Yicang Zhou, Kamran Khan, Zhilan Feng, Jianhong Wu,
Projection of tuberculosis incidence with increasing immigration trends,
2008,
254,
00225193,
215,
10.1016/j.jtbi.2008.05.026
|
|
573.
|
Aniruddha Banerjee,
Temporal changes in the spatial pattern of disease rates incorporating known risk factors,
2007,
65,
02779536,
7,
10.1016/j.socscimed.2007.03.040
|
|
574.
|
Kanica Goel, Abhishek Kumar, ,
Nonlinear dynamics of a time-delayed epidemic model with two explicit aware classes, saturated incidences, and treatment,
2020,
101,
0924-090X,
1693,
10.1007/s11071-020-05762-9
|
|
575.
|
Bruno Buonomo, Cruz Vargas-De-León,
Stability and bifurcation analysis of a vector-bias model of malaria transmission,
2013,
242,
00255564,
59,
10.1016/j.mbs.2012.12.001
|
|
576.
|
Dhiraj Kumar Das, Subhas Khajanchi, Tapan Kumar Kar,
2019,
Influence of multiple re-infections in tuberculosis transmission dynamics: A Mathematical Approach,
978-1-5386-7684-4,
1,
10.1109/ICMSAO.2019.8880397
|
|
577.
|
Reza Memarbashi, Elahe Sorouri,
Modeling the effect of information transmission on the drug dynamic,
2020,
135,
2190-5444,
10.1140/epjp/s13360-019-00064-5
|
|
578.
|
Ana P. Lemos-Paião, Cristiana J. Silva, Delfim F. M. Torres, Ezio Venturino,
Optimal Control of Aquatic Diseases: A Case Study of Yemen’s Cholera Outbreak,
2020,
185,
0022-3239,
1008,
10.1007/s10957-020-01668-z
|
|
579.
|
C. P. Bhunu, S. Mushayabasa, H. Kojouharov, J. M. Tchuenche,
Mathematical Analysis of an HIV/AIDS Model: Impact of Educational Programs and Abstinence in Sub-Saharan Africa,
2011,
10,
1570-1166,
31,
10.1007/s10852-010-9134-0
|
|
580.
|
Steady Mushayabasa, Claver P Bhunu,
Mathematical analysis of hepatitis C model for intravenous drug misusers: Impact of antiviral therapy, abstinence and relapse,
2014,
90,
0037-5497,
487,
10.1177/0037549714528388
|
|
581.
|
Aliya A. Alsaleh, Abba B. Gumel,
Analysis of Risk-Structured Vaccination Model for the Dynamics of Oncogenic and Warts-Causing HPV Types,
2014,
76,
0092-8240,
1670,
10.1007/s11538-014-9972-4
|
|
582.
|
Sze-chuan Suen, Margaret L. Brandeau, Jeremy D. Goldhaber-Fiebert,
Optimal timing of drug sensitivity testing for patients on first-line tuberculosis treatment,
2018,
21,
1386-9620,
632,
10.1007/s10729-017-9416-4
|
|
583.
|
Yan Wang, Kaihui Liu, Yijun Lou,
An age-structured within-host HIV model with T-cell competition,
2017,
38,
14681218,
1,
10.1016/j.nonrwa.2017.04.002
|
|
584.
|
EDWARD T. CHIYAKA, WINSTON GARIRA,
MATHEMATICAL ANALYSIS OF THE TRANSMISSION DYNAMICS OF SCHISTOSOMIASIS IN THE HUMAN-SNAIL HOSTS,
2009,
17,
0218-3390,
397,
10.1142/S0218339009002910
|
|
585.
|
Anuj Kumar, Prashant K. Srivastava,
Role of Optimal Screening and Treatment on Infectious Diseases Dynamics in Presence of Self-protection of Susceptible,
2019,
0971-3514,
10.1007/s12591-019-00467-x
|
|
586.
|
Hai-Feng Huo, Peng Yang, Hong Xiang,
Stability and bifurcation for an SEIS epidemic model with the impact of media,
2018,
490,
03784371,
702,
10.1016/j.physa.2017.08.139
|
|
587.
|
Zhiwen Zhang,
Mathematical Model of a Bacteria-Immunity System with the Influence of Quorum Sensing Signal Molecule,
2016,
04,
2327-4352,
888,
10.4236/jamp.2016.45097
|
|
588.
|
Eric J. Avila-Vales, Ángel G. Cervantes-Pérez,
Global stability for SIRS epidemic models with general incidence rate and transfer from infectious to susceptible,
2019,
25,
1405-213X,
637,
10.1007/s40590-018-0211-0
|
|
589.
|
Hailay Weldegiorgis Berhe, Oluwole Daniel Makinde,
Computational modelling and optimal control of measles epidemic in human population,
2020,
190,
03032647,
104102,
10.1016/j.biosystems.2020.104102
|
|
590.
|
S. M. Garba, M. A. Safi, S. Usaini,
Mathematical model for assessing the impact of vaccination and treatment on measles transmission dynamics,
2017,
40,
01704214,
6371,
10.1002/mma.4462
|
|
591.
|
C. P. Bhunu, S. Mushayabasa,
A Theoretical Analysis of Smoking and Alcoholism,
2012,
11,
1570-1166,
387,
10.1007/s10852-012-9195-3
|
|
592.
|
Calistus N. Ngonghala, Miranda I. Teboh-Ewungkem, Gideon A. Ngwa,
Persistent oscillations and backward bifurcation in a malaria model with varying human and mosquito populations: implications for control,
2015,
70,
0303-6812,
1581,
10.1007/s00285-014-0804-9
|
|
593.
|
Bruno Buonomo, Deborah Lacitignola, Cruz Vargas-De-León,
Qualitative analysis and optimal control of an epidemic model with vaccination and treatment,
2014,
100,
03784754,
88,
10.1016/j.matcom.2013.11.005
|
|
594.
|
Sungim Whang, Sunhwa Choi, Eunok Jung,
A dynamic model for tuberculosis transmission and optimal treatment strategies in South Korea,
2011,
279,
00225193,
120,
10.1016/j.jtbi.2011.03.009
|
|
595.
|
Mohammad A. Safi, Dessalegn Y. Melesse, Abba B. Gumel,
Dynamics Analysis of a Multi-strain Cholera Model with an Imperfect Vaccine,
2013,
75,
0092-8240,
1104,
10.1007/s11538-013-9845-2
|
|
596.
|
A. Nwankwo, D. Okuonghae,
Mathematical Analysis of the Transmission Dynamics of HIV Syphilis Co-infection in the Presence of Treatment for Syphilis,
2018,
80,
0092-8240,
437,
10.1007/s11538-017-0384-0
|
|
597.
|
Daniel Okuonghae, Bernard O. Ikhimwin,
Dynamics of a Mathematical Model for Tuberculosis with Variability in Susceptibility and Disease Progressions Due to Difference in Awareness Level,
2016,
6,
1664-302X,
10.3389/fmicb.2015.01530
|
|
598.
|
DANIEL OKUONGHAE, VINCENT AIHIE,
CASE DETECTION AND DIRECT OBSERVATION THERAPY STRATEGY (DOTS) IN NIGERIA: ITS EFFECT ON TB DYNAMICS,
2008,
16,
0218-3390,
1,
10.1142/S0218339008002344
|
|
599.
|
Xin-You Meng, Ni-Ni Qin, Hai-Feng Huo,
Dynamics of a Food Chain Model with Two Infected Predators,
2021,
31,
0218-1274,
2150019,
10.1142/S021812742150019X
|
|
600.
|
A. Mhlanga, S. Mushayabasa,
Computational and Theoretical Analysis of the Association Between Gender and HSV-2 Treatment Adherence,
2020,
0001-5342,
10.1007/s10441-020-09392-x
|
|
601.
|
F. Nyabadza, B. T. Bekele, M. A. Rúa, D. M. Malonza, N. Chiduku, M. Kgosimore,
The Implications of HIV Treatment on the HIV-Malaria Coinfection Dynamics: A Modeling Perspective,
2015,
2015,
2314-6133,
1,
10.1155/2015/659651
|
|
602.
|
A. Mhlanga,
Assessing the Impact of Optimal Health Education Programs on the Control of Zoonotic Diseases,
2020,
2020,
1748-670X,
1,
10.1155/2020/6584323
|
|
603.
|
S. Bowong, J. Kurths,
Modelling Tuberculosis and Hepatitis B Co-infections,
2010,
5,
0973-5348,
196,
10.1051/mmnp/20105610
|
|
604.
|
Malek Pourhosseini, Reza Memarbashi,
Relationship between addicts with incurable diseases in an epidemic model,
2020,
0170-4214,
10.1002/mma.7011
|
|
605.
|
G. Djatcha Yaleu, S. Bowong, E. Houpa Danga, J. Kurths,
Mathematical analysis of the dynamical transmission of Neisseria meningitidis serogroup A,
2017,
94,
0020-7160,
2409,
10.1080/00207160.2017.1283411
|
|
606.
|
WENDI WANG,
DYNAMICS OF BACTERIA-PHAGE INTERACTIONS WITH IMMUNE RESPONSE IN A CHEMOSTAT,
2017,
25,
0218-3390,
697,
10.1142/S0218339017400010
|
|
607.
|
Nicholas A. Battista, Leigh B. Pearcy, W. Christopher Strickland,
Modeling the Prescription Opioid Epidemic,
2019,
81,
0092-8240,
2258,
10.1007/s11538-019-00605-0
|
|
608.
|
Jie Bai, Chayu Yang, Xueying Wang, Jin Wang,
MODELING THE WITHIN-HOST DYNAMICS OF CHOLERA: BACTERIAL-VIRAL-IMMUNE INTERACTION,
2021,
11,
2156-907X,
690,
10.11948/20190241
|
|
609.
|
Sk Shahid Nadim, Indrajit Ghosh, Joydev Chattopadhyay,
Short-term predictions and prevention strategies for COVID-19: A model-based study,
2021,
00963003,
126251,
10.1016/j.amc.2021.126251
|
|
610.
|
U. B. Odionyenma, A. Omame, N. O. Ukanwoke, I. Nometa,
Optimal control of Chlamydia model with vaccination,
2021,
2195-268X,
10.1007/s40435-021-00789-1
|
|
611.
|
W Nur, A Suryanto, W M Kusumawinahyu,
Mathematical model of schistosomiasis with health education and molluscicide intervention,
2021,
1821,
1742-6588,
012033,
10.1088/1742-6596/1821/1/012033
|
|
612.
|
Sumit Kumar, Sandeep Sharma, Fateh Singh, PS Bhatnagar, Nitu Kumari,
2021,
Chapter 6,
978-981-33-6263-5,
101,
10.1007/978-981-33-6264-2_6
|
|
613.
|
Dipo Aldila, Besya Raisna Saslia, Wed Gayarti, Hengki Tasman,
Backward bifurcation analysis on Tuberculosis disease transmission with saturated treatment,
2021,
1821,
1742-6588,
012002,
10.1088/1742-6596/1821/1/012002
|
|
614.
|
D Aldila, K Rasyiqah, G Ardaneswari, H. Tasman,
A mathematical model of Zika disease by considering transition from the asymptomatic to symptomatic phase,
2021,
1821,
1742-6588,
012001,
10.1088/1742-6596/1821/1/012001
|
|
615.
|
Yangyang Lv, Lijuan Chen, Fengde Chen, Zhong Li,
Stability and Bifurcation in an SI Epidemic Model with Additive Allee Effect and Time Delay,
2021,
31,
0218-1274,
2150060,
10.1142/S0218127421500607
|
|
616.
|
A.M. Ndondo, S.K. Kasereka, S.F. Bisuta, K. Kyamakya, E.F.G. Doungmo, R-B.M. Ngoie,
Analysis, modeling and optimal control of COVID-19 outbreak with three forms of infection in Democratic Republic of the Congo,
2021,
22113797,
104096,
10.1016/j.rinp.2021.104096
|
|
617.
|
Tanuja Das, Prashant K. Srivastava, Anuj Kumar,
Nonlinear dynamical behavior of an SEIR mathematical model: Effect of information and saturated treatment,
2021,
31,
1054-1500,
043104,
10.1063/5.0039048
|
|
618.
|
Ming-Tao Li, Jin Cui, Juan Zhang, Gui-Quan Sun,
Transmission analysis of COVID-19 with discrete time imported cases: Tianjin and Chongqing as cases,
2021,
24680427,
10.1016/j.idm.2021.03.007
|
|
619.
|
T.S. Faniran, A.O. Falade, T.O. Alakija,
Modeling Tuberculosis Among Healthcare Workers,
2019,
5,
2351-8227,
186,
10.2478/mjpaa-2019-0014
|
|
620.
|
Shubhankar Saha, Priti Kumar Roy,
A Comparative Study Between Two Systems with and Without Awareness in Controlling HIV/AIDS,
2017,
27,
2083-8492,
337,
10.1515/amcs-2017-0024
|
|
621.
|
Dhiraj Kumar Das, T.K. Kar,
Global dynamics of a tuberculosis model with sensitivity of the smear microscopy,
2021,
146,
09600779,
110879,
10.1016/j.chaos.2021.110879
|
|
622.
|
Sandeep Sharma, Fateh Singh,
Bifurcation and stability analysis of a cholera model with vaccination and saturated treatment,
2021,
146,
09600779,
110912,
10.1016/j.chaos.2021.110912
|
|
623.
|
Nathan Oigo Mokaya, Haileyesus Tessema Alemmeh, Cyrus Gitonga Ngari, Grace Gakii Muthuri, Chun Wei,
Mathematical Modelling and Analysis of Corruption of Morals amongst Adolescents with Control Measures in Kenya,
2021,
2021,
1607-887X,
1,
10.1155/2021/6662185
|
|
624.
|
Dipo Aldila, Michellyn Angelina,
Optimal control problem and backward bifurcation on malaria transmission with vector bias,
2021,
7,
24058440,
e06824,
10.1016/j.heliyon.2021.e06824
|
|
625.
|
Ally Yeketi Ayinla, Wan Ainun Mior Othman, Musa Rabiu,
A Mathematical Model of the Tuberculosis Epidemic,
2021,
0001-5342,
10.1007/s10441-020-09406-8
|
|
626.
|
D.S. Degefa, O. D. Makinde, D.T. Temesgen,
Modeling potato virus Y disease dynamics in a mixed-cropping system,
2021,
0228-6203,
1,
10.1080/02286203.2021.1919818
|
|
627.
|
Clotilde Djuikem, Frédéric Grognard, Roger Tagne Wafo, Suzanne Touzeau, Samuel Bowong, Jacek Banasiak,
Modelling coffee leaf rust dynamics to control its spread,
2021,
16,
0973-5348,
26,
10.1051/mmnp/2021018
|
|
628.
|
Shikha Jain, Sachin Kumar,
Dynamic analysis of the role of innate immunity in SEIS epidemic model,
2021,
136,
2190-5444,
10.1140/epjp/s13360-021-01390-3
|
|
629.
|
Chen Wenkai, Hong Zhang, Paul Georgescu, Tan Li, Bing Zhang,
Taming obstinate spreaders: the dynamics of a rumor spreading model incorporating inhibiting mechanisms and attitude adjustment,
2021,
40,
2238-3603,
10.1007/s40314-021-01492-9
|
|
630.
|
S.O. Akindeinde, Eric Okyere, A.O. Adewumi, R.S. Lebelo, Olanrewaju. O. Fabelurin, Stephen. E. Moore,
Caputo Fractional-order SEIRP model for COVID-19 epidemic,
2021,
11100168,
10.1016/j.aej.2021.04.097
|
|
631.
|
Xin Jiang,
Threshold dynamics of a general delayed HIV model with double transmission modes and latent viral infection,
2022,
7,
2473-6988,
2456,
10.3934/math.2022138
|
|
632.
|
Parthasakha Das, Ranjit Kumar Upadhyay, Arvind Kumar Misra, Fathalla A. Rihan, Pritha Das, Dibakar Ghosh,
Mathematical model of COVID-19 with comorbidity and controlling using non-pharmaceutical interventions and vaccination,
2021,
106,
0924-090X,
1213,
10.1007/s11071-021-06517-w
|
|
633.
|
Kunwer Singh Mathur, Bhagwan Kumar,
2022,
Chapter 101,
978-3-030-99791-5,
1193,
10.1007/978-3-030-99792-2_101
|
|
634.
|
S.Y. Tchoumi, M.L. Diagne, H. Rwezaura, J.M. Tchuenche,
Malaria and COVID-19 co-dynamics: A mathematical model and optimal control,
2021,
99,
0307904X,
294,
10.1016/j.apm.2021.06.016
|
|
635.
|
Ariana Putri, Rara Sandhy Winanda, Defri Ahmad, Saddam Al Aziz, Sovia Helmi Putri,
2023,
61,
0094-243X,
050001,
10.1063/5.0122679
|
|
636.
|
Amit Kumar Saha, Shikha Saha, Chandra Nath Podder,
Effect of awareness, quarantine and vaccination as control strategies on COVID-19 with Co-morbidity and Re-infection,
2022,
7,
24680427,
660,
10.1016/j.idm.2022.09.004
|
|
637.
|
Tangjuan Li, Yanni Xiao,
Linking the disease transmission to information dissemination dynamics: An insight from a multi-scale model study,
2021,
526,
00225193,
110796,
10.1016/j.jtbi.2021.110796
|
|
638.
|
Assefa Denekew Zewdie, Sunita Gakkhar, Shiv Kumar Gupta,
Human–animal Nipah virus transmission: model analysis and optimal control,
2022,
2195-268X,
10.1007/s40435-022-01089-y
|
|
639.
|
Sarafa A. Iyaniwura, Rabiu Musa, Jude D. Kong,
A generalized distributed delay model of COVID-19: An endemic model with immunity waning,
2023,
20,
1551-0018,
5379,
10.3934/mbe.2023249
|
|
640.
|
Deccy Y. Trejos, Jose C. Valverde, Ezio Venturino,
Dynamics of infectious diseases: A review of the main biological aspects and their mathematical translation,
2022,
7,
2444-8656,
1,
10.2478/amns.2021.1.00012
|
|
641.
|
Obiora Cornelius Collins, Kevin Jan Duffy,
A stochastic epidemic model for the dynamics and control of maize streak disease,
2022,
72,
0906-4710,
635,
10.1080/09064710.2021.2012587
|
|
642.
|
Habtamu Ayalew Engida, David Mwangi Theuri, Duncan Gathungu, John Gachohi, Haileyesus Tessema Alemneh, Yongwimon Lenbury,
A Mathematical Model Analysis for the Transmission Dynamics of Leptospirosis Disease in Human and Rodent Populations,
2022,
2022,
1748-6718,
1,
10.1155/2022/1806585
|
|
643.
|
Rendani Netshikweta, Winston Garira, Jan Rychtar,
An Embedded Multiscale Modelling to Guide Control and Elimination of Paratuberculosis in Ruminants,
2021,
2021,
1748-6718,
1,
10.1155/2021/9919700
|
|
644.
|
Tengfei Wang, Shaoli Wang, Fei Xu,
Bistability and Robustness for Virus Infection Models with Nonmonotonic Immune Responses in Viral Infection Systems,
2022,
10,
2227-7390,
2139,
10.3390/math10122139
|
|
645.
|
Siwaphorn Kanchanarat, Settapat Chinviriyasit, Wirawan Chinviriyasit,
Mathematical Assessment of the Impact of the Imperfect Vaccination on Diphtheria Transmission Dynamics,
2022,
14,
2073-8994,
2000,
10.3390/sym14102000
|
|
646.
|
Nitu Kumari, Sumit Kumar, Sandeep Sharma, Fateh Singh, Rana Parshad,
Basic reproduction number estimation and forecasting of COVID-19: A case study of India, Brazil and Peru,
2023,
22,
1534-0392,
417,
10.3934/cpaa.2021170
|
|
647.
|
Zenebe Shiferaw Kifle, Legesse Lemecha Obsu,
Mathematical modeling for COVID-19 transmission dynamics: A case study in Ethiopia,
2022,
34,
22113797,
105191,
10.1016/j.rinp.2022.105191
|
|
648.
|
S. M. Kassa, J. B. H. Njagarah, Y. A. Terefe,
Modelling Covid-19 mitigation and control strategies in the presence of migration and vaccination: the case of South Africa,
2021,
32,
1012-9405,
1295,
10.1007/s13370-021-00900-x
|
|
649.
|
TEMESGEN DURESSA KENO, OLUWOLE DANIEL MAKINDE, LEGESSE LEMECHA OBSU,
IMPACT OF TEMPERATURE VARIABILITY ON SIRS MALARIA MODEL,
2021,
29,
0218-3390,
773,
10.1142/S0218339021500170
|
|
650.
|
Sayed Saber, Azza M. Alghamdi, Ghada A. Ahmed, Khulud M. Alshehri,
Mathematical Modelling and optimal control of pneumonia disease in sheep and goats in Al-Baha region with cost-effective strategies,
2022,
7,
2473-6988,
12011,
10.3934/math.2022669
|
|
651.
|
Afeez Abidemi, Joseph Ackora-Prah, Hammed Olawale Fatoyinbo, Joshua Kiddy K. Asamoah,
Lyapunov stability analysis and optimization measures for a dengue disease transmission model,
2022,
602,
03784371,
127646,
10.1016/j.physa.2022.127646
|
|
652.
|
Mohammad Sajid, Rajiv Aggarwal, Ashutosh Rajput,
Assessing the impact of transmissibility on a cluster-based COVID-19 model in India,
2021,
12,
1793-9623,
2141002,
10.1142/S1793962321410026
|
|
653.
|
Wasim Abbas, Masud M. A., Anna Park, Sajida Parveen, Sangil Kim, Siew Ann Cheong,
Evolution and consequences of individual responses during the COVID-19 outbreak,
2022,
17,
1932-6203,
e0273964,
10.1371/journal.pone.0273964
|
|
654.
|
Hoang Pham,
A Dynamic Model of Multiple Time-Delay Interactions between the Virus-Infected Cells and Body’s Immune System with Autoimmune Diseases,
2021,
10,
2075-1680,
216,
10.3390/axioms10030216
|
|
655.
|
Yize Zhou, Jingwen Zhang, Chayan Zhu, Haohua Wang,
Modelling and analysis of rumour propagation based on stochastic optimal control,
2022,
61,
11100168,
12869,
10.1016/j.aej.2022.06.057
|
|
656.
|
Xiangyun Shi, Xiwen Gao, Xueyong Zhou, Yongfeng Li,
Analysis of an SQEIAR epidemic model with media coverage and asymptomatic infection,
2021,
6,
2473-6988,
12298,
10.3934/math.2021712
|
|
657.
|
Hasifa Nampala, Matylda Jablonska-Sabuka, Martin Singull, Mustafa Inc,
Mathematical Analysis of the Role of HIV/HBV Latency in Hepatocytes,
2021,
2021,
1687-0042,
1,
10.1155/2021/5525857
|
|
658.
|
Sudhanshu Kumar Biswas, Susmita Sarkar, Uttam Ghosh,
The Role of Isolation and Vector Control in the Prevention of Dengue: A Case Study of 2014 Dengue Outbreak in Singapore,
2021,
7,
2349-5103,
10.1007/s40819-021-01167-3
|
|
659.
|
Manisha Mukherjee, Biswajit Mondal,
An integer-order SIS epidemic model having variable population and fear effect: comparing the stability with fractional order,
2022,
30,
2090-9128,
10.1186/s42787-022-00153-y
|
|
660.
|
R. Prem Kumar, P.K. Santra, G.S. Mahapatra,
Global stability and analysing the sensitivity of parameters of a multiple-susceptible population model of SARS-CoV-2 emphasising vaccination drive,
2023,
203,
03784754,
741,
10.1016/j.matcom.2022.07.012
|
|
661.
|
Sangeeta Kumari, Ranjit Kumar Upadhyay,
Exploring the Dynamics of a Malware Propagation Model and Its Control Strategy,
2021,
121,
0929-6212,
1945,
10.1007/s11277-021-08748-x
|
|
662.
|
Abdisa Shiferaw Melese,
MODELLING OF PATHOGENS IMPACT ON THE HUMAN DISEASE TRANSMISSION WITH OPTIMAL CONTROL STRATEGIES,
2022,
1072-3374,
10.1007/s10958-022-06027-z
|
|
663.
|
Farai Nyabadza, Josiah Mushanyu, Rachel Mbogo, Gift Muchatibaya,
Modelling the Influence of Dynamic Social Processes on COVID-19 Infection Dynamics,
2023,
11,
2227-7390,
963,
10.3390/math11040963
|
|
664.
|
Shinta A. Rahmayani, Dipo Aldila, Bevina D. Handari,
Cost-effectiveness analysis on measles transmission with vaccination and treatment intervention,
2021,
6,
2473-6988,
12491,
10.3934/math.2021721
|
|
665.
|
Pritam Saha, Sudhanshu Kumar Biswas, Md. Haider Ali Biswas, Uttam Ghosh,
An SEQAIHR model to study COVID-19 transmission and optimal control strategies in Hong Kong, 2022,
2023,
0924-090X,
10.1007/s11071-022-08181-0
|
|
666.
|
Neslihan Nesliye Pelen, Meltem Gölgeli,
Vector-borne disinformation during disasters and emergencies,
2022,
596,
03784371,
127157,
10.1016/j.physa.2022.127157
|
|
667.
|
Jayanta Kumar Ghosh, Pritam Saha, Md Kamrujjaman, Uttam Ghosh,
Transmission Dynamics of COVID-19 with Saturated Treatment: A Case Study of Spain,
2023,
53,
0103-9733,
10.1007/s13538-023-01267-z
|
|
668.
|
Afeez Abidemi, Nur Arina Bazilah Aziz,
Analysis of deterministic models for dengue disease transmission dynamics with vaccination perspective in Johor, Malaysia,
2022,
8,
2349-5103,
10.1007/s40819-022-01250-3
|
|
669.
|
Juan Carlos Sierra-Rojas, Ramón Reyes-Carreto, Cruz Vargas-De-León, Jorge Fernando Camacho, Khalid Hattaf,
Modeling and Mathematical Analysis of the Dynamics of HPV in Cervical Epithelial Cells: Transient, Acute, Latency, and Chronic Infections,
2022,
2022,
1748-6718,
1,
10.1155/2022/8650071
|
|
670.
|
Anuraj Singh, Preeti Deolia,
COVID-19 outbreak: a predictive mathematical study incorporating shedding effect,
2023,
69,
1598-5865,
1239,
10.1007/s12190-022-01792-1
|
|
671.
|
Tigabu Kasia Ayele, Emile Franc Doungmo Goufo, Stella Mugisha,
Mathematical modeling of HIV/AIDS with optimal control: A case study in Ethiopia,
2021,
26,
22113797,
104263,
10.1016/j.rinp.2021.104263
|
|
672.
|
Maya Rayungsari, Agus Suryanto, Wuryansari Muharini Kusumawinahyu, Isnani Darti,
Dynamical Analysis of a Predator-Prey Model Incorporating Predator Cannibalism and Refuge,
2022,
11,
2075-1680,
116,
10.3390/axioms11030116
|
|
673.
|
Shraddha Ramdas Bandekar, Mini Ghosh,
A co-infection model on TB - COVID-19 with optimal control and sensitivity analysis,
2022,
200,
03784754,
1,
10.1016/j.matcom.2022.04.001
|
|
674.
|
A. K. Misra, Jyoti Maurya,
Bifurcation analysis and optimal control of an epidemic model with limited number of hospital beds,
2023,
16,
1793-5245,
10.1142/S1793524522501017
|
|
675.
|
S. Kanwal, M.K. Siddiqui, E. Bonyah, K. Sarwar, T.S. Shaikh, N. Ahmed, C. Rajivganthi,
Analysis of the Epidemic Biological Model of Tuberculosis (TB) via Numerical Schemes,
2022,
2022,
1099-0526,
1,
10.1155/2022/5147951
|
|
676.
|
Timothy Kamara, Michael Byamukama, Martin Karuhanga, Kenan Yildirim,
Modelling the Role of Treatment, Public Health Education, and Chemical Control Strategies on Transmission Dynamics of Schistosomiasis,
2022,
2022,
2314-4785,
1,
10.1155/2022/2094979
|
|
677.
|
M.S. Goudiaby, L.D. Gning, M.L. Diagne, Ben M. Dia, H. Rwezaura, J.M. Tchuenche,
Optimal control analysis of a COVID-19 and tuberculosis co-dynamics model,
2022,
28,
23529148,
100849,
10.1016/j.imu.2022.100849
|
|
678.
|
Cheng-Long Wang, Shasha Gao, Xue-Zhi Li, Maia Martcheva,
Modeling Syphilis and HIV Coinfection: A Case Study in the USA,
2023,
85,
0092-8240,
10.1007/s11538-023-01123-w
|
|
679.
|
Elijah B. Baloba, Baba Seidu,
A mathematical model of anthrax epidemic with behavioural change,
2022,
2,
2767-8946,
243,
10.3934/mmc.2022023
|
|
680.
|
Fouad A. Abolaban,
Modeling Dysentery Diarrhea Using Statistical Period Prevalence,
2021,
128,
1526-1506,
183,
10.32604/cmes.2021.015472
|
|
681.
|
Dipo Aldila, Bapan Ghosh,
Dynamical Analysis on a Malaria Model with Relapse Preventive Treatment and Saturated Fumigation,
2022,
2022,
1748-6718,
1,
10.1155/2022/1135452
|
|
682.
|
H. Husnulkhotimah, R. Rusin, D. Aldila,
2021,
2374,
0094-243X,
030004,
10.1063/5.0058692
|
|
683.
|
Fernando Saldaña, José A Camacho-Gutiérrez, Geiser Villavicencio-Pulido, Jorge X. Velasco-Hernández,
Modeling the transmission dynamics and vaccination strategies for human papillomavirus infection: An optimal control approach,
2022,
112,
0307904X,
767,
10.1016/j.apm.2022.08.017
|
|
684.
|
Komi Afassinou,
Mathematical modelling of cockroach involvement in foodborne disease transmission in human habitat,
2023,
518,
0022247X,
126686,
10.1016/j.jmaa.2022.126686
|
|
685.
|
Selim Reja, Sinchan Ghosh, Indrajit Ghosh, Ayan Paul, Sabyasachi Bhattacharya,
Investigation and control strategy for canine distemper disease on endangered wild dog species: a model-based approach,
2022,
4,
2523-3963,
10.1007/s42452-022-05053-5
|
|
686.
|
Preety Kumari, Swarn Singh, Harendra Pal Singh,
Dynamical Analysis of COVID-19 Model Incorporating Environmental Factors,
2022,
46,
1028-6276,
1651,
10.1007/s40995-022-01372-9
|
|
687.
|
Jayanta Mondal, Piu Samui, Amar Nath Chatterjee,
Dynamical demeanour of SARS-CoV-2 virus undergoing immune response mechanism in COVID-19 pandemic,
2022,
231,
1951-6355,
3357,
10.1140/epjs/s11734-022-00437-5
|
|
688.
|
Xinshu Cui, Dingyu Xue, Feng Pan,
A fractional SVIR-B epidemic model for Cholera with imperfect vaccination and saturated treatment,
2022,
137,
2190-5444,
10.1140/epjp/s13360-022-03564-z
|
|
689.
|
A. J. OUEMBA TASSÉ, B. TSANOU, J. LUBUMA, JEAN LOUIS WOUKENG, FRANCIS SIGNING,
EBOLA VIRUS DISEASE DYNAMICS WITH SOME PREVENTIVE MEASURES: A CASE STUDY OF THE 2018–2020 KIVU OUTBREAK,
2022,
30,
0218-3390,
113,
10.1142/S0218339022500048
|
|
690.
|
Pritam Saha, Gopal Chandra Sikdar, Uttam Ghosh,
Transmission dynamics and control strategy of single-strain dengue disease,
2022,
2195-268X,
10.1007/s40435-022-01027-y
|
|
691.
|
Xingyu Wang, Zhijun Liu, Lianwen Wang, Caihong Guo,
A diffusive tuberculosis model with early and late latent infections: New Lyapunov function approach to global stability,
2022,
15,
1793-5245,
10.1142/S1793524522500577
|
|
692.
|
Belela Samuel Kotola, Shewafera Wondimagegnhu Teklu, Muhammad Fazal Ijaz,
A Mathematical Modeling Analysis of Racism and Corruption Codynamics with Numerical Simulation as Infectious Diseases,
2022,
2022,
1748-6718,
1,
10.1155/2022/9977727
|
|
693.
|
Lin Hu, Shengfu Wang, Tingting Zheng, Zhenxiang Hu, Yuenan Kang, Lin-Fei Nie, Zhidong Teng,
The Effects of Migration and Limited Medical Resources of the Transmission of SARS-CoV-2 Model with Two Patches,
2022,
84,
0092-8240,
10.1007/s11538-022-01010-w
|
|
694.
|
Maysaa Al Qurashi, Saima Rashid, Ahmed M. Alshehri, Fahd Jarad, Farhat Safdar,
New numerical dynamics of the fractional monkeypox virus model transmission pertaining to nonsingular kernels,
2022,
20,
1551-0018,
402,
10.3934/mbe.2023019
|
|
695.
|
Sarita Bugalia, Jai Prakash Tripathi, Hao Wang,
Mathematical modeling of intervention and low medical resource availability with delays: Applications to COVID-19 outbreaks in Spain and Italy,
2021,
18,
1551-0018,
5865,
10.3934/mbe.2021295
|
|
696.
|
Baojun Song,
Basic reinfection number and backward bifurcation,
2021,
18,
1551-0018,
8064,
10.3934/mbe.2021400
|
|
697.
|
Y.A. Terefe, J.B.H. Njagarah, S.M. Kassa,
Effect of cross-border migration on the healthcare system of a destination community: Insights from mathematical modelling of COVID-19 in a developing country,
2023,
208,
03784754,
444,
10.1016/j.matcom.2023.01.040
|
|
698.
|
Baba Seidu, Joshua Kiddy K. Asamoah, Eric Neebo Wiah, Joseph Ackora-Prah,
A comprehensive cost-effectiveness analysis of control of maize streak virus disease with Holling’s Type II predation form and standard incidence,
2022,
40,
22113797,
105862,
10.1016/j.rinp.2022.105862
|
|
699.
|
Bo Yang, Zhenhua Yu, Yuanli Cai,
The impact of vaccination on the spread of COVID-19: Studying by a mathematical model,
2022,
590,
03784371,
126717,
10.1016/j.physa.2021.126717
|
|
700.
|
Rubayyi T. Alqahtani, Abdelhamid Ajbar,
Study of Dynamics of a COVID-19 Model for Saudi Arabia with Vaccination Rate, Saturated Treatment Function and Saturated Incidence Rate,
2021,
9,
2227-7390,
3134,
10.3390/math9233134
|
|
701.
|
Andrew Omame, Mary Ele Isah, Mujahid Abbas,
An optimal control model for COVID‐19, zika, dengue, and chikungunya co‐dynamics with reinfection,
2023,
44,
0143-2087,
170,
10.1002/oca.2936
|
|
702.
|
Chinwendu E. Madubueze, Z. Chazuka, I. O. Onwubuya, F. Fatmawati, C. W. Chukwu,
On the mathematical modeling of schistosomiasis transmission dynamics with heterogeneous intermediate host,
2022,
8,
2297-4687,
10.3389/fams.2022.1020161
|
|
703.
|
Andrew Omame, Mujahid Abbas,
Modeling SARS-CoV-2 and HBV co-dynamics with optimal control,
2023,
615,
03784371,
128607,
10.1016/j.physa.2023.128607
|
|
704.
|
Bilali Mataru, Okelo Jeconiah Abonyo, David Malonza, Anum Shafiq,
Mathematical Model for Crimes in Developing Countries with Some Control Strategies,
2023,
2023,
1687-0042,
1,
10.1155/2023/8699882
|
|
705.
|
Abdulfatai Atte Momoh, Abdullahi Alhassan, M.O. Ibrahim, S.A. Amoo,
Curtailing the spread of drug-abuse and violence co-menace: An optimal control approach,
2022,
61,
11100168,
4399,
10.1016/j.aej.2021.10.002
|
|
706.
|
Shewafera Wondimagegnhu Teklu, Belela Samuel Kotola,
A dynamical analysis and numerical simulation of COVID-19 and HIV/AIDS co-infection with intervention strategies,
2023,
17,
1751-3758,
10.1080/17513758.2023.2175920
|
|
707.
|
Amit Kumar Saha, Chandra Nath Podder, Ashrafi Meher Niger,
Dynamics of novel COVID-19 in the presence of Co-morbidity,
2022,
7,
24680427,
138,
10.1016/j.idm.2022.04.005
|
|
708.
|
Yu Mu, Tsz-Lik Chan, Hsiang-Yu Yuan, Wing-Cheong Lo,
Transmission Dynamics of Tuberculosis with Age-specific Disease Progression,
2022,
84,
0092-8240,
10.1007/s11538-022-01032-4
|
|
709.
|
J. Ssebuliba, J.N. Nakakawa, A. Ssematimba, J.Y.T. Mugisha,
Mathematical modelling of COVID-19 transmission dynamics in a partially comorbid community,
2022,
5,
26668181,
100212,
10.1016/j.padiff.2021.100212
|
|
710.
|
Ivan Sseguya, Joseph Y.T. Mugisha, Betty Nannyonga,
Outbreak and control of Foot and Mouth Disease within and across adjacent districts—A mathematical perspective,
2022,
6,
26667207,
100074,
10.1016/j.rico.2021.100074
|
|
711.
|
Sangeeta Saha, Guruprasad Samanta, Juan J. Nieto,
Impact of optimal vaccination and social distancing on COVID-19 pandemic,
2022,
200,
03784754,
285,
10.1016/j.matcom.2022.04.025
|
|
712.
|
Saviour Worlanyo Akuamoah, John Coker Ayimah, David Yaro, Elikem Kofi Krampa, Awura Amma Adomaa Danso, Fernando Simoes,
Predicting COVID-19 Pandemic Endpoint in Some Sub-Saharan African and European Countries,
2023,
2023,
1687-0042,
1,
10.1155/2023/7882843
|
|
713.
|
Zinabu Teka Melese, Haileyesus Tessema Alemneh,
Enhancing reservoir control in the co-dynamics of HIV-VL: from mathematical modeling perspective,
2021,
2021,
1687-1847,
10.1186/s13662-021-03584-6
|
|
714.
|
M.A Masud, Md. Hamidul Islam, Byul Nim Kim,
Understanding the Role of Environmental Transmission on COVID-19 Herd Immunity and Invasion Potential,
2022,
84,
0092-8240,
10.1007/s11538-022-01070-y
|
|
715.
|
Bevina D. Handari, Dipo Aldila, Bunga O. Dewi, Hanna Rosuliyana, Sarbaz H. A. Khosnaw,
Analysis of yellow fever prevention strategy from the perspective of mathematical model and cost-effectiveness analysis,
2021,
19,
1551-0018,
1786,
10.3934/mbe.2022084
|
|
716.
|
Tangjuan Li, Yanni Xiao,
Complex dynamics of an epidemic model with saturated media coverage and recovery,
2022,
107,
0924-090X,
2995,
10.1007/s11071-021-07096-6
|
|
717.
|
Xiaotao Han, Hua Liu, Xiaofen Lin, Yumei Wei, Ma Ming, Yao Zhong Zhang,
Dynamic Analysis of a VSEIR Model with Vaccination Efficacy and Immune Decline,
2022,
2022,
1687-9139,
1,
10.1155/2022/7596164
|
|
718.
|
Rehana Naz, Imran Naeem,
The Artificial Hamiltonian, First Integrals, and Closed-Form Solutions of Dynamical Systems for Epidemics,
2018,
73,
1865-7109,
323,
10.1515/zna-2017-0399
|
|
719.
|
Hatice Bulut, Meltem Gölgeli, Fatihcan M. Atay,
Modelling personal cautiousness during the COVID-19 pandemic: a case study for Turkey and Italy,
2021,
105,
0924-090X,
957,
10.1007/s11071-021-06320-7
|
|
720.
|
Andrew Omame, Mujahid Abbas, Chibueze P. Onyenegecha,
Backward bifurcation and optimal control in a co-infection model for SARS-CoV-2 and ZIKV,
2022,
37,
22113797,
105481,
10.1016/j.rinp.2022.105481
|
|
721.
|
Qingyi Zhu, Yuhang Liu, Xuhang Luo, Kefei Cheng,
A Malware Propagation Model Considering Conformity Psychology in Social Networks,
2022,
11,
2075-1680,
632,
10.3390/axioms11110632
|
|
722.
|
Ramashis Banerjee, Raj Kumar Biswas,
Fractional optimal control of compartmental SIR model of COVID-19: Showing the impact of effective vaccination,
2022,
55,
24058963,
616,
10.1016/j.ifacol.2022.04.101
|
|
723.
|
Musa Rabiu, Sarafa A. Iyaniwura,
Assessing the potential impact of immunity waning on the dynamics of COVID-19 in South Africa: an endemic model of COVID-19,
2022,
109,
0924-090X,
203,
10.1007/s11071-022-07225-9
|
|
724.
|
Maryam Al-Yahyai, Fatma Al-Musalhi, Ibrahim Elmojtaba, Nasser Al-Salti,
Mathematical analysis of a COVID-19 model with different types of quarantine and isolation,
2022,
20,
1551-0018,
1344,
10.3934/mbe.2023061
|
|
725.
|
Malede Atnaw Belay, Okelo Jeconia Abonyo, David Mwangi Theuri, Chen Mengxin,
Mathematical Model of Hepatitis B Disease with Optimal Control and Cost-Effectiveness Analysis,
2023,
2023,
1748-6718,
1,
10.1155/2023/5215494
|
|
726.
|
Jing Wang, Hongyong Zhao,
Bifurcation Analysis of Multiscale Malaria Model with Serratia AS1 Bacteria and Saturated Treatment,
2022,
32,
0218-1274,
10.1142/S0218127422501346
|
|
727.
|
Madhuri Majumder, Pankaj Kumar Tiwari, Samares Pal,
Impact of nonlinear infection rate on HIV/AIDS considering prevalence‐dependent awareness,
2023,
46,
0170-4214,
3821,
10.1002/mma.8723
|
|
728.
|
Rachid Bouajaji, Hassan Laarabi, Mostafa Rachik, Abdelhadi Abta, Xiaohua Ding,
A Multiregion Discrete-Time Epidemic Model of Mycobacterium tuberculosis Infections: An Optimal Control Approach,
2021,
2021,
1607-887X,
1,
10.1155/2021/5594778
|
|
729.
|
Hemaho B. Taboe, Michael Asare-Baah, Enahoro A. Iboi, Calistus N. Ngonghala,
Critical assessment of the impact of vaccine-type and immunity on the burden of COVID-19,
2023,
00255564,
108981,
10.1016/j.mbs.2023.108981
|
|
730.
|
Abdulfatai Atte Momoh, Yusuf Bala, Dekera Jacob Washachi, Dione Déthié,
Mathematical analysis and optimal control interventions for sex structured syphilis model with three stages of infection and loss of immunity,
2021,
2021,
1687-1847,
10.1186/s13662-021-03432-7
|
|
731.
|
Faraja Luhanda, Jacob I. Irunde, Dmitry Kuznetsov,
Modeling cryptosporidiosis in humans and cattle: Deterministic and stochastic approaches,
2023,
21,
24056731,
e00293,
10.1016/j.parepi.2023.e00293
|
|
732.
|
Maranya M. Mayengo,
The Volterra–Lyapunov matrix theory for global stability analysis of alcohol-related health risks model,
2023,
44,
22113797,
106149,
10.1016/j.rinp.2022.106149
|
|
733.
|
Vanessa Steindorf, Akhil Kumar Srivastav, Nico Stollenwerk, Bob W. Kooi, Maíra Aguiar,
Modeling secondary infections with temporary immunity and disease enhancement factor: Mechanisms for complex dynamics in simple epidemiological models,
2022,
164,
09600779,
112709,
10.1016/j.chaos.2022.112709
|
|
734.
|
A. Omame, D. Okuonghae, U. E. Nwafor, B. U. Odionyenma,
A co-infection model for HPV and syphilis with optimal control and cost-effectiveness analysis,
2021,
14,
1793-5245,
10.1142/S1793524521500509
|
|
735.
|
Zain Ul Abadin Zafar, Samina Younas, Sumera Zaib, Cemil Tunç,
An efficient numerical simulation and mathematical modeling for the prevention of tuberculosis,
2022,
15,
1793-5245,
10.1142/S1793524522500152
|
|
736.
|
Vijay Pal Bajiya, Sarita Bugalia, Jai Prakash Tripathi, Maia Martcheva,
Deciphering the transmission dynamics of COVID-19 in India: optimal control and cost effective analysis,
2022,
16,
1751-3758,
665,
10.1080/17513758.2022.2116493
|
|
737.
|
Joshua Kiddy K. Asamoah, Eric Okyere, Ernest Yankson, Alex Akwasi Opoku, Agnes Adom-Konadu, Edward Acheampong, Yarhands Dissou Arthur,
Non-fractional and fractional mathematical analysis and simulations for Q fever,
2022,
156,
09600779,
111821,
10.1016/j.chaos.2022.111821
|
|
738.
|
Eshetu Dadi Gurmu, Boka Kumsa Bola, Purnachandra Rao Koya,
Modeling the Impact of Screening on the Transmission Dynamics of Human Papillomavirus with Optimal Control,
2021,
16,
2224-2856,
735,
10.37394/23203.2021.16.66
|
|
739.
|
Haileyesus Tessema Alemneh, Asnakew Mesele Belay, Fahad Al Basir,
Modelling, Analysis, and Simulation of Measles Disease Transmission Dynamics,
2023,
2023,
1607-887X,
1,
10.1155/2023/9353540
|
|
740.
|
Lu Niu, Xiaoyun Wang,
Dynamic analysis based on the relapse rate of drug epidemic model,
2021,
14,
1793-5245,
10.1142/S1793524521500522
|
|
741.
|
Ebrima Kanyi, Ayodeji Sunday Afolabi, Nelson Owuor Onyango, Frank Werner,
Mathematical Modeling and Analysis of Transmission Dynamics and Control of Schistosomiasis,
2021,
2021,
1687-0042,
1,
10.1155/2021/6653796
|
|
742.
|
Aleksandra Tomczak, Dominika Warmjak, Aneta Wiśniewska,
The impact of active case finding among high-risk populations on the decline of tuberculosis incidence,
2021,
1230-8013,
10.29089/2021.21.00185
|
|
743.
|
Dipo Aldila, Joseph Páez Chávez, Karunia Putra Wijaya, Naleen Chaminda Ganegoda, Gracia Monalisa Simorangkir, Hengki Tasman, Edy Soewono,
A tuberculosis epidemic model as a proxy for the assessment of the novel M72/AS01E vaccine,
2023,
120,
10075704,
107162,
10.1016/j.cnsns.2023.107162
|
|
744.
|
ROSHAN MANDALE, ANUJ KUMAR, D. K. K. VAMSI, PRASHANT K SRIVASTAVA,
DYNAMICS OF AN INFECTIOUS DISEASE IN THE PRESENCE OF SATURATED MEDICAL TREATMENT OF HOLLING TYPE III AND SELF-PROTECTION,
2021,
29,
0218-3390,
245,
10.1142/S0218339021400064
|
|
745.
|
Sayooj Aby Jose, R. Raja, B. I. Omede, Ravi P. Agarwal, J. Alzabut, J. Cao, V. E. Balas,
Mathematical modeling on co-infection: transmission dynamics of Zika virus and Dengue fever,
2023,
111,
0924-090X,
4879,
10.1007/s11071-022-08063-5
|
|
746.
|
Ahmed M. Elaiw, Afnan D. Al Agha,
Analysis of the In-Host Dynamics of Tuberculosis and SARS-CoV-2 Coinfection,
2023,
11,
2227-7390,
1104,
10.3390/math11051104
|
|
747.
|
Anusit Chamnan, Puntani Pongsumpun, I-Ming Tang, Napasool Wongvanich,
Effect of a Vaccination against the Dengue Fever Epidemic in an Age Structure Population: From the Perspective of the Local and Global Stability Analysis,
2022,
10,
2227-7390,
904,
10.3390/math10060904
|
|
748.
|
Sangeeta Saha, Guruprasad Samanta,
Dynamics of an Epidemic Model under the Influence of Environmental Stress,
2021,
16,
19946538,
201,
10.17537/2021.16.201
|
|
749.
|
Dipo Aldila, Meksianis Z. Ndii, Nursanti Anggriani, Hengki Tasman, Bevina D. Handari,
Impact of social awareness, case detection, and hospital capacity on dengue eradication in Jakarta: A mathematical model approach,
2023,
64,
11100168,
691,
10.1016/j.aej.2022.11.032
|
|
750.
|
Rujira Chaysiri, Garrick E. Louis, Wirawan Chinviriyasit,
Modeling the health impact of water and sanitation service deficits on waterborne disease transmission,
2021,
2021,
1687-1847,
10.1186/s13662-021-03556-w
|
|
751.
|
Oluwatayo Michael Ogunmiloro, Amos Sesan Idowu,
Bifurcation, sensitivity, and optimal control analysis of onchocerciasis disease transmission model with two groups of infectives and saturated treatment function,
2022,
0170-4214,
10.1002/mma.8317
|
|
752.
|
Xuan Liu, Mati ur Rahmamn, Saeed Ahmad, Dumitru Baleanu, Yasir Nadeem Anjam,
A new fractional infectious disease model under the non-singular Mittag–Leffler derivative,
2022,
1745-5030,
1,
10.1080/17455030.2022.2036386
|
|
753.
|
Zhenhua Yu, Si Lu, Dan Wang, Zhiwu Li,
Modeling and analysis of rumor propagation in social networks,
2021,
580,
00200255,
857,
10.1016/j.ins.2021.09.012
|
|
754.
|
Olajumoke Oludoun, Olukayode Adebimpe, James Ndako, Oluwakemi E. Abiodun, Babatunde Gbadamosi, Benedicta B. Aladeitan,
Global stability analysis of hepatitis B virus dynamics,
2022,
10,
2046-1402,
429,
10.12688/f1000research.52785.2
|
|
755.
|
Kalyan Das, B.S.N. Murthy, Sk. Abdus Samad, Md. Haider Ali Biswas,
Mathematical transmission analysis of SEIR tuberculosis disease model,
2021,
2,
26663511,
100120,
10.1016/j.sintl.2021.100120
|
|
756.
|
Saheb Pal, Indrajit Ghosh,
A mechanistic model for airborne and direct human-to-human transmission of COVID-19: effect of mitigation strategies and immigration of infectious persons,
2022,
231,
1951-6355,
3371,
10.1140/epjs/s11734-022-00433-9
|
|
757.
|
Fumin Zhang, Zhipeng Qiu, Tao Feng, Yanfei Dai, Guihong Fan,
Modeling the Importation and Local Transmission of Huanglongbing Disease: Bifurcation and Sensitivity Analysis,
2022,
32,
0218-1274,
10.1142/S0218127422501176
|
|
758.
|
Afeez Abidemi, Olumuyiwa James Peter,
Host-vector dynamics of dengue with asymptomatic, isolation and vigilant compartments: insights from modelling,
2023,
138,
2190-5444,
10.1140/epjp/s13360-023-03823-7
|
|
759.
|
E. O. Omondi, R. W. Mbogo, L. S. Luboobi,
A mathematical model of HIV transmission between commercial sex workers and injection drug users,
2022,
9,
2768-4830,
10.1080/27684830.2022.2082044
|
|
760.
|
Fatima Sulayman, Farah Aini Abdullah, Chenquan Gan,
Analysis of a Tuberculosis Infection Model considering the Influence of Saturated Recovery (Treatment),
2021,
2021,
1099-0526,
1,
10.1155/2021/1805651
|
|
761.
|
Dipo Aldila, Muhammad Shahzad, Sarbaz H.A. Khoshnaw, Mehboob Ali, Faisal Sultan, Arthana Islamilova, Yusril Rais Anwar, Brenda M. Samiadji,
Optimal control problem arising from COVID-19 transmission model with rapid-test,
2022,
37,
22113797,
105501,
10.1016/j.rinp.2022.105501
|
|
762.
|
TSEGAYE KEBEDE IRENA, SUNITA GAKKHAR,
MODELING THE ROLE OF VACCINATION, ENVIRONMENTAL SANITATION, AND SATURATED TREATMENT ON THE SPREAD OF TYPHOID FEVER,
2022,
30,
0218-3390,
459,
10.1142/S0218339022500164
|
|
763.
|
A. K. Misra, Jyoti Maurya, Mohammad Sajid,
Modeling the effect of time delay in the increment of number of hospital beds to control an infectious disease,
2022,
19,
1551-0018,
11628,
10.3934/mbe.2022541
|
|
764.
|
Abayomi Samuel Oke, Oluwafemi Isaac Bada, Ganiyu Rasaq, Victoria Adodo,
Mathematical analysis of the dynamics of COVID‐19 in Africa under the influence of asymptomatic cases and re‐infection,
2022,
45,
0170-4214,
137,
10.1002/mma.7769
|
|
765.
|
Doyo Kereyu, Seleshi Demie,
Transmission dynamics model of Tuberculosis with optimal control strategies in Haramaya district, Ethiopia,
2021,
2021,
1687-1847,
10.1186/s13662-021-03448-z
|
|
766.
|
Dipo Aldila,
Optimal control for dengue eradication program under the media awareness effect,
2021,
0,
1565-1339,
10.1515/ijnsns-2020-0142
|
|
767.
|
Shewafera Wondimagegnhu Teklu,
Mathematical analysis of the transmission dynamics of COVID-19 infection in the presence of intervention strategies,
2022,
16,
1751-3758,
640,
10.1080/17513758.2022.2111469
|
|
768.
|
Rong Liu, Wanbiao Ma, Ke Guo,
The general chemostat model with multiple nutrients and flocculating agent: From deterministic behavior to stochastic forcing transition,
2023,
117,
10075704,
106910,
10.1016/j.cnsns.2022.106910
|
|
769.
|
S.Y. Tchoumi, H. Rwezaura, J.M. Tchuenche,
Dynamic of a two-strain COVID-19 model with vaccination,
2022,
39,
22113797,
105777,
10.1016/j.rinp.2022.105777
|
|
770.
|
A. K. Misra, Kanishka Goyal, Jyoti Maurya,
Impact of Social Media Advertisements on the Dynamics of Online Shopping: A Modeling Study,
2022,
0971-3514,
10.1007/s12591-022-00598-8
|
|
771.
|
Amar Nath Chatterjee, Fahad Al Basir, Dibyendu Biswas, Teklebirhan Abraha,
Global Dynamics of SARS-CoV-2 Infection with Antibody Response and the Impact of Impulsive Drug Therapy,
2022,
10,
2076-393X,
1846,
10.3390/vaccines10111846
|
|
772.
|
Calistus N. Ngonghala,
The impact of temperature and decay in insecticide-treated net efficacy on malaria prevalence and control,
2023,
355,
00255564,
108936,
10.1016/j.mbs.2022.108936
|
|
773.
|
Ramesh Gautam, Anjana Pokharel, Khagendra Adhikari, Kedar Nath Uprety, Naveen K. Vaidya,
Modeling malaria transmission in Nepal: impact of imported cases through cross-border mobility,
2022,
16,
1751-3758,
528,
10.1080/17513758.2022.2096935
|
|
774.
|
Shikha Jain, Sachin Kumar,
Dynamical analysis of SEIS model with nonlinear innate immunity and saturated treatment,
2021,
136,
2190-5444,
10.1140/epjp/s13360-021-01944-5
|
|
775.
|
Andrew Omame, Ndolane Sene, Ikenna Nometa, Cosmas I. Nwakanma, Emmanuel U. Nwafor, Nneka O. Iheonu, Daniel Okuonghae,
Analysis of COVID‐19 and comorbidity co‐infection model with optimal control,
2021,
42,
0143-2087,
1568,
10.1002/oca.2748
|
|
776.
|
Jilan Alya, Dipo Aldila, Rahmi Rusin,
2022,
2501,
0094-243X,
020016,
10.1063/5.0082709
|
|
777.
|
I. Ngningone Eya, I. V. Yatat-Djeumen, R. M. Etoua, J. J. Tewa,
Mathematical modelling of the dynamics of human schistosomiasis with time-discrete delays,
2021,
27,
1405-213X,
10.1007/s40590-021-00376-6
|
|
778.
|
Junli Liu, Mengjie Han, Tailei Zhang,
Global dynamics in a model for anthrax transmission in animal populations,
2023,
16,
1793-5245,
10.1142/S1793524522501194
|
|
779.
|
Jie Bai, Xiunan Wang, Jin Wang,
An epidemic-economic model for COVID-19,
2022,
19,
1551-0018,
9658,
10.3934/mbe.2022449
|
|
780.
|
Jayanta Mondal, Subhas Khajanchi,
Mathematical modeling and optimal intervention strategies of the COVID-19 outbreak,
2022,
109,
0924-090X,
177,
10.1007/s11071-022-07235-7
|
|
781.
|
Nasser Al-Salti, Ibrahim M. Elmojtaba, Jaqueline Mesquita, Dayse Pastore, Maryam Al-Yahyai,
2021,
Chapter 11,
978-981-16-2449-0,
219,
10.1007/978-981-16-2450-6_11
|
|
782.
|
Y. Dumont, I.V. Yatat–Djeumen,
Sterile insect technique with accidental releases of sterile females. Impact on mosquito-borne diseases control when viruses are circulating,
2022,
343,
00255564,
108724,
10.1016/j.mbs.2021.108724
|
|
783.
|
Oluwasegun M. Ibrahim, Daniel Okuonghae, Monday N.O. Ikhile,
Mathematical Modeling of the Population Dynamics of Age-Structured Criminal Gangs with Correctional Intervention Measures,
2022,
107,
0307904X,
39,
10.1016/j.apm.2022.02.005
|
|
784.
|
Jean C. Kamgang, Berge Tsanou, Duplex E. Houpa Danga, Jean M. -S. Lubuma,
Mosquito feeding preference and pyrethroids repellent effect eliminate backward bifurcation in malaria dynamics,
2022,
0035-5038,
10.1007/s11587-022-00695-4
|
|
785.
|
D. Pal, D. Ghosh, P. K. Santra, G. S. Mahapatra,
Mathematical Analysis of a COVID-19 Epidemic Model by Using Data Driven Epidemiological Parameters of Diseases Spread in India,
2022,
67,
0006-3509,
231,
10.1134/S0006350922020154
|
|
786.
|
Olumuyiwa James Peter, Sumit Kumar, Nitu Kumari, Festus Abiodun Oguntolu, Kayode Oshinubi, Rabiu Musa,
Transmission dynamics of Monkeypox virus: a mathematical modelling approach,
2022,
8,
2363-6203,
3423,
10.1007/s40808-021-01313-2
|
|
787.
|
Bo Yang, Zhenhua Yu, Yuanli Cai,
A spread model of COVID-19 with some strict anti-epidemic measures,
2022,
109,
0924-090X,
265,
10.1007/s11071-022-07244-6
|
|
788.
|
Shefali Gupta, Sumit Kaur Bhatia, Naina Arya,
Effect of incubation delay and pollution on the transmission dynamics of infectious disease,
2022,
0430-3202,
10.1007/s11565-022-00399-5
|
|
789.
|
Abdisa Shiferaw Melese, Oluwole Daniel Makinde, Legesse Lemecha Obsu,
Mathematical modelling and analysis of coffee berry disease dynamics on a coffee farm,
2022,
19,
1551-0018,
7349,
10.3934/mbe.2022347
|
|
790.
|
G. Simorangkir, D. Aldila, A. Rizka, H. Tasman, E. S. Nugraha,
Mathematical model of tuberculosis considering observed treatment and vaccination interventions,
2021,
24,
0972-0502,
1717,
10.1080/09720502.2021.1958515
|
|
791.
|
Rajinder Sharma,
2022,
9780323902403,
563,
10.1016/B978-0-323-90240-3.00031-X
|
|
792.
|
Rabindra Kumar Gupta, Soumitra Pal, A. K. Misra,
Modeling the impact of precautionary measures and sanitation practices broadcasted through media on the dynamics of bacterial diseases,
2023,
9,
2363-6203,
397,
10.1007/s40808-022-01469-5
|
|
793.
|
Arvind Kumar Misra, Rajanish Kumar Rai, Pankaj Kumar Tiwari, Maia Martcheva,
Delay in budget allocation for vaccination and awareness induces chaos in an infectious disease model,
2021,
15,
1751-3758,
395,
10.1080/17513758.2021.1952322
|
|
794.
|
M.L. Diagne, H. Rwezaura, S.A. Pedro, J.M. Tchuenche,
Theoretical analysis of a measles model with nonlinear incidence functions,
2023,
117,
10075704,
106911,
10.1016/j.cnsns.2022.106911
|
|
795.
|
Solomon Kadaleka, Shirley Abelman, Jean M. Tchuenche,
A Mathematical Model of the Transmission Dynamics of Bovine Schistosomiasis with Contaminated Environment,
2022,
70,
0001-5342,
10.1007/s10441-021-09434-y
|
|
796.
|
Hamadjam Abboubakar, Reinhard Racke,
Mathematical modeling, forecasting, and optimal control of typhoid fever transmission dynamics,
2021,
149,
09600779,
111074,
10.1016/j.chaos.2021.111074
|
|
797.
|
Reuben Iortyer Gweryina, Chinwendu Emilian Madubueze, Francis Shienbee Kaduna,
Mathematical assessment of the role of denial on COVID-19 transmission with non-linear incidence and treatment functions,
2021,
12,
24682276,
e00811,
10.1016/j.sciaf.2021.e00811
|
|
798.
|
AZIZ KHAN, THABET ABDELJAWAD, HASIB KHAN,
A NUMERICAL SCHEME FOR THE GENERALIZED ABC FRACTIONAL DERIVATIVE BASED ON LAGRANGE INTERPOLATION POLYNOMIAL,
2022,
30,
0218-348X,
10.1142/S0218348X22401806
|
|
799.
|
Olumuyiwa James Peter, Abdullahi Yusuf, Mayowa M. Ojo, Sumit Kumar, Nitu Kumari, Festus Abiodun Oguntolu,
A Mathematical Model Analysis of Meningitis with Treatment and Vaccination in Fractional Derivatives,
2022,
8,
2349-5103,
10.1007/s40819-022-01317-1
|
|
800.
|
Michael Chapwanya, Jean Lubuma, Yibeltal Terefe, Berge Tsanou,
Analysis of War and Conflict Effect on the Transmission Dynamics of the Tenth Ebola Outbreak in the Democratic Republic of Congo,
2022,
84,
0092-8240,
10.1007/s11538-022-01094-4
|
|
801.
|
Hamadjam Abboubakar, Albert Kouchéré Guidzavaï, Joseph Yangla, Irépran Damakoa, Ruben Mouangue,
Mathematical modeling and projections of a vector-borne disease with optimal control strategies: A case study of the Chikungunya in Chad,
2021,
150,
09600779,
111197,
10.1016/j.chaos.2021.111197
|
|
802.
|
Pritam Saha, Uttam Ghosh,
Global dynamics and control strategies of an epidemic model having logistic growth, non-monotone incidence with the impact of limited hospital beds ,
2021,
105,
0924-090X,
971,
10.1007/s11071-021-06607-9
|
|
803.
|
Nur ’Izzati Hamdan, Adem Kilicman,
Mathematical Modelling of Dengue Transmission with Intervention Strategies Using Fractional Derivatives,
2022,
84,
0092-8240,
10.1007/s11538-022-01096-2
|
|
804.
|
Murtantina Dyahayu Mawarni, Dwi Lestari,
2022,
2575,
0094-243X,
030002,
10.1063/5.0108518
|
|
805.
|
Rinlapas Wattanasirikosone, Chairat Modnak,
Analysing transmission dynamics of HIV/AIDS with optimal control strategy and its controlled state,
2022,
16,
1751-3758,
499,
10.1080/17513758.2022.2096934
|
|
806.
|
BRUNO BUONOMO, ROSSELLA DELLA MARCA, SILESHI SINTAYEHU SHARBAYTA,
A BEHAVIORAL CHANGE MODEL TO ASSESS VACCINATION-INDUCED RELAXATION OF SOCIAL DISTANCING DURING AN EPIDEMIC,
2022,
30,
0218-3390,
1,
10.1142/S0218339022500085
|
|
807.
|
2023,
9780323953894,
413,
10.1016/B978-0-32-395389-4.00020-7
|
|
808.
|
Obiora Cornelius Collins, Kevin Jan Duffy,
Using Data of a Lassa Fever Epidemic in Nigeria: A Mathematical Model Is Shown to Capture the Dynamics and Point to Possible Control Methods,
2023,
11,
2227-7390,
1181,
10.3390/math11051181
|
|
809.
|
Abdelhamid Ajbar, Rubayyi T. Alqahtani, Mourad Boumaza,
Dynamics of an SIR-Based COVID-19 Model With Linear Incidence Rate, Nonlinear Removal Rate, and Public Awareness,
2021,
9,
2296-424X,
10.3389/fphy.2021.634251
|
|
810.
|
Jian Ren, Rui Xu,
Dynamic analysis and application of a dengue transmission model with vaccination and incubation delays,
2023,
69,
1598-5865,
895,
10.1007/s12190-022-01776-1
|
|
811.
|
Mayowa M. Ojo, Emile Franc Doungmo Goufo,
Modeling, analyzing and simulating the dynamics of Lassa fever in Nigeria,
2022,
30,
2090-9128,
10.1186/s42787-022-00138-x
|
|
812.
|
Fırat Evirgen, Sümeyra Uçar, Necati Özdemir, Zakia Hammouch,
System response of an alcoholism model under the effect of immigration via non-singular kernel derivative,
2021,
14,
1937-1179,
2199,
10.3934/dcdss.2020145
|
|
813.
|
Shahriar Seddighi Chaharborj, Sarkhosh Seddighi Chaharborj, Jalal Hassanzadeh Asl, Pei See Phang,
Controlling of pandemic COVID-19 using optimal control theory,
2021,
26,
22113797,
104311,
10.1016/j.rinp.2021.104311
|
|
814.
|
Jin-Qiang Zhao, Ebenezer Bonyah, Bing Yan, Muhammad Altaf Khan, K.O. Okosun, Mohammad Y. Alshahrani, Taseer Muhammad,
A mathematical model for the coinfection of Buruli ulcer and Cholera,
2021,
29,
22113797,
104746,
10.1016/j.rinp.2021.104746
|
|
815.
|
Yiran Yuan, Ning Li,
Optimal control and cost-effectiveness analysis for a COVID-19 model with individual protection awareness,
2022,
603,
03784371,
127804,
10.1016/j.physa.2022.127804
|
|
816.
|
Aatif Ali, Quaid Iqbal, Joshua Kiddy K. Asamoah, Saeed Islam,
Mathematical modeling for the transmission potential of Zika virus with optimal control strategies,
2022,
137,
2190-5444,
10.1140/epjp/s13360-022-02368-5
|
|
817.
|
Xinsheng Ma, Yuhuai Zhang, Yuming Chen,
Stability and bifurcation analysis of an HIV-1 infection model with a general incidence and CTL immune response,
2021,
15,
1751-3758,
367,
10.1080/17513758.2021.1950224
|
|
818.
|
Muhammad Jawad, Sultan Alyobi, Mansour F. Yassen, Wajaree Weera,
A higher order Galerkin time discretization scheme for the novel mathematical model of COVID-19,
2023,
8,
2473-6988,
3763,
10.3934/math.2023188
|
|
819.
|
John O. Akanni,
Mathematical assessment of the role of illicit drug use on terrorism spread dynamics,
2022,
68,
1598-5865,
3873,
10.1007/s12190-021-01674-y
|
|
820.
|
Andrew Omame, Mujahid Abbas,
The stability analysis of a co-circulation model for COVID-19, dengue, and zika with nonlinear incidence rates and vaccination strategies,
2023,
3,
27724425,
100151,
10.1016/j.health.2023.100151
|
|
821.
|
Shambel Tadesse Degefa, Oluwole Daniel Makinde, Tamirat Temesgen Dufera,
MATHEMATICAL MODEL OF POTATO VIRUS Y DISEASE SPREAD WITH OPTIMAL CONTROL,
2022,
27,
1392-6292,
408,
10.3846/mma.2022.15077
|
|
822.
|
Wahyudin Nur, Agus Suryanto, Wuryansari Muharini Kusumawinahyu,
Schistosomiasis model with treatment, habitat modification and biological control,
2022,
19,
1551-0018,
13799,
10.3934/mbe.2022643
|
|
823.
|
Xueyong Zhou, Xiangyun Shi,
Stability analysis and backward bifurcation on an SEIQR epidemic model with nonlinear innate immunity,
2022,
30,
2688-1594,
3481,
10.3934/era.2022178
|
|
824.
|
Habtamu Ayalew Engida, David Mwangi Theuri, Duncan Gathungu, John Gachohi, Haileyesus Tessema Alemneh,
A mathematical model analysis of the human melioidosis transmission dynamics with an asymptomatic case,
2022,
8,
24058440,
e11720,
10.1016/j.heliyon.2022.e11720
|
|
825.
|
Sacrifice Nana-Kyere, Baba Seidu, Shahzad Sarwar,
A Mathematical Evaluation of the Cost-Effectiveness of Self-Protection, Vaccination, and Disinfectant Spraying for COVID-19 Control,
2022,
2022,
1748-6718,
1,
10.1155/2022/1715414
|
|
826.
|
Muhammad Altaf Khan, Navid Iqbal, Yasir Khan, Ebraheem Alzahrani,
A biological mathematical model of vector-host disease with saturated treatment function and optimal control strategies,
2020,
17,
1551-0018,
3972,
10.3934/mbe.2020220
|
|
827.
|
C. W. Chukwu, ,
Modelling fractional-order dynamics of COVID-19 with environmental transmission and vaccination: A case study of Indonesia,
2022,
7,
2473-6988,
4416,
10.3934/math.2022246
|
|
828.
|
A.K. Alzahrani, Muhammad Khan,
The co-dynamics of malaria and tuberculosis with optimal control strategies,
2022,
36,
0354-5180,
1789,
10.2298/FIL2206789A
|
|
829.
|
E.C. Chukukere, A. Omame, C.P. Onyenegecha, S.C. Inyama,
Mathematical analysis of a model for Chlamydia and Gonorrhea codynamics with optimal control,
2021,
27,
22113797,
104566,
10.1016/j.rinp.2021.104566
|
|
830.
|
Hashim M. Alshehri, Aziz Khan, Anita Tomar,
A Fractional Order Hepatitis C Mathematical Model with Mittag-Leffler Kernel,
2021,
2021,
2314-8888,
1,
10.1155/2021/2524027
|
|
831.
|
Daudel Tchatat, Gabriel Kolaye, Samuel Bowong, Anatole Temgoua,
Theoretical assessment of the impact of awareness programs on cholera transmission dynamic,
2022,
0,
1565-1339,
10.1515/ijnsns-2021-0341
|
|
832.
|
Sylvie Diane Djiomba Njankou, Farai Nyabadza,
Modelling the potential influence of human migration and two strains on Ebola virus disease dynamics,
2022,
7,
24680427,
645,
10.1016/j.idm.2022.10.002
|
|
833.
|
Jazmín G. Aguilar-Basulto, Eric J. Avila-Vales, Arturo J. Nic-May,
2023,
9780323995573,
55,
10.1016/B978-0-32-399557-3.00008-9
|
|
834.
|
Tianyang Li, Qiru Wang,
Bifurcation Analysis for Two-Species Commensalism (Amensalism) Systems with Distributed Delays,
2022,
32,
0218-1274,
10.1142/S0218127422501334
|
|
835.
|
N.I. Akinwande, T.T. Ashezua, R.I. Gweryina, S.A. Somma, F.A. Oguntolu, A. Usman, O.N. Abdurrahman, F.S. Kaduna, T.P. Adajime, F.A. Kuta, S. Abdulrahman, R.O. Olayiwola, A.I. Enagi, G.A. Bolarin, M.D. Shehu,
Mathematical model of COVID-19 transmission dynamics incorporating booster vaccine program and environmental contamination,
2022,
8,
24058440,
e11513,
10.1016/j.heliyon.2022.e11513
|
|
836.
|
J. Heidecke, M. V. Barbarossa,
2021,
Chapter 14,
978-3-030-73240-0,
221,
10.1007/978-3-030-73241-7_14
|
|
837.
|
Assefa Denekew Zewdie, Sunita Gakkhar,
An epidemic model with transport-related infection incorporating awareness and screening,
2022,
68,
1598-5865,
3107,
10.1007/s12190-021-01653-3
|
|
838.
|
Pritam Saha, Gopal Chandra Sikdar, Jayanta Kumar Ghosh, Uttam Ghosh,
Disease dynamics and optimal control strategies of a two serotypes dengue model with co-infection,
2023,
209,
03784754,
16,
10.1016/j.matcom.2023.02.011
|
|
839.
|
Abdelhamid Ajbar, Rubayyi T. Alqahtani, Mourad Boumaza,
Dynamics of a COVID-19 Model with a Nonlinear Incidence Rate, Quarantine, Media Effects, and Number of Hospital Beds,
2021,
13,
2073-8994,
947,
10.3390/sym13060947
|
|
840.
|
Ihsan Ullah, Saeed Ahmad, Mostafa Zahri,
Investigation of the effect of awareness and treatment on Tuberculosis infection via a novel epidemic model,
2023,
68,
11100168,
127,
10.1016/j.aej.2022.12.061
|
|
841.
|
A. Mhlanga, Xiaohua Ding,
Dynamics of HSV-2 in the Presence of Optimal Counseling and Education among Prisoners,
2021,
2021,
1607-887X,
1,
10.1155/2021/9916427
|
|
842.
|
Jayanta Kumar Ghosh, Sudhanshu Kumar Biswas, Susmita Sarkar, Uttam Ghosh,
Mathematical modelling of COVID-19: A case study of Italy,
2022,
194,
03784754,
1,
10.1016/j.matcom.2021.11.008
|
|
843.
|
Sangeeta Saha, Guruprasad Samanta,
Analysis of a host–vector dynamics of a dengue disease model with optimal vector control strategy,
2022,
195,
03784754,
31,
10.1016/j.matcom.2021.12.021
|
|
844.
|
Debashis Biswas, Samares Pal,
Role of awareness to control transmission of HIV/AIDS epidemic with treatment and sensitivity analysis,
2022,
25,
0972-0510,
617,
10.1080/09720510.2021.1923925
|
|
845.
|
Julien Arino, Evan Milliken,
Bistability in deterministic and stochastic SLIAR-type models with imperfect and waning vaccine protection,
2022,
84,
0303-6812,
10.1007/s00285-022-01765-9
|
|
846.
|
Olajumoke Oludoun, Olukayode Adebimpe, James Ndako, Oluwakemi E. Abiodun, Babatunde Gbadamosi, Benedicta B. Aladeitan,
Global stability analysis of hepatitis B virus dynamics,
2021,
10,
2046-1402,
429,
10.12688/f1000research.52785.1
|
|
847.
|
Ashish Poonia, Siddhartha P. Chakrabarty,
Two strains and drug adherence: An HIV model in the paradigm of community transmission,
2022,
108,
0924-090X,
2767,
10.1007/s11071-022-07323-8
|
|
848.
|
Fatima Sulayman, Farah Aini Abdullah,
Dynamical Behaviour of a Modified Tuberculosis Model with Impact of Public Health Education and Hospital Treatment,
2022,
11,
2075-1680,
723,
10.3390/axioms11120723
|
|
849.
|
Richmond Opoku-Sarkodie, Ferenc A. Bartha, Mónika Polner, Gergely Röst,
Dynamics of an SIRWS model with waning of immunity and varying immune boosting period,
2022,
16,
1751-3758,
596,
10.1080/17513758.2022.2109766
|
|
850.
|
Sayooj Aby Jose, Ramachandran Raja, Quanxin Zhu, Jehad Alzabut, Michal Niezabitowski, Valentina E. Balas,
Impact of strong determination and awareness on substance addictions: A mathematical modeling approach,
2022,
45,
0170-4214,
4140,
10.1002/mma.7859
|
|
851.
|
Sara Salem Alzaid, Badr Saad T. Alkahtani,
Asymptotic analysis of a giving up smoking model with relapse and harmonic mean type incidence rate,
2021,
28,
22113797,
104437,
10.1016/j.rinp.2021.104437
|
|
852.
|
Sedrique A. Tiomela, J.E. Macías-Díaz, Alain Mvogo,
Computer simulation of the dynamics of a spatial susceptible-infected-recovered epidemic model with time delays in transmission and treatment,
2021,
212,
01692607,
106469,
10.1016/j.cmpb.2021.106469
|
|
853.
|
Jiajia Zhang, Yuanhua Qiao, Yan Zhang,
Bifurcation analysis and optimal control of COVID-19 with exogenous reinfection and media coverages,
2023,
16,
1793-5245,
10.1142/S1793524522500863
|
|
854.
|
Wahyudin Nur, Agus Suryanto, Wuryansari Muharini Kusumawinahyu,
Schistosomiasis Model Incorporating Snail Predator as Biological Control Agent,
2021,
9,
2227-7390,
1858,
10.3390/math9161858
|
|
855.
|
Xi-Chao Duan, Huanhuan Cheng, Maia Martcheva, Sanling Yuan,
Dynamics of an Age Structured Heroin Transmission Model with Imperfect Vaccination,
2021,
31,
0218-1274,
2150157,
10.1142/S0218127421501571
|
|
856.
|
Zareen A. Khan, Mati ur Rahman, Kamal Shah, Richard I. Avery,
Study of a Fractal-Fractional Smoking Models with Relapse and Harmonic Mean Type Incidence Rate,
2021,
2021,
2314-8888,
1,
10.1155/2021/6344079
|
|
857.
|
Sandra Cole, Stephen Wirkus,
Modeling the Dynamics of Heroin and Illicit Opioid Use Disorder, Treatment, and Recovery,
2022,
84,
0092-8240,
10.1007/s11538-022-01002-w
|
|
858.
|
Malek Pourhosseini, Reza Memarbashi,
The effect of irreversible drug abuse in a dynamic model,
2022,
27,
1531-3492,
6907,
10.3934/dcdsb.2022026
|
|
859.
|
Mohammed M. Al-Shomrani, Salihu S. Musa, Abdullahi Yusuf,
Unfolding the Transmission Dynamics of Monkeypox Virus: An Epidemiological Modelling Analysis,
2023,
11,
2227-7390,
1121,
10.3390/math11051121
|
|
860.
|
Kamal Shah, Muhammad Sinan, Thabet Abdeljawad, M.A. El-Shorbagy, Bahaaeldin Abdalla, Marwan S. Abualrub, Chongyang Liu,
A Detailed Study of a Fractal-Fractional Transmission Dynamical Model of Viral Infectious Disease with Vaccination,
2022,
2022,
1099-0526,
1,
10.1155/2022/7236824
|
|
861.
|
Eunice E. Ukwajunor, Eno E. E. Akarawak, Israel Olutunji Abiala,
Mathematical modeling of the impact of temperature variations and immigration on malaria prevalence in Nigeria,
2021,
14,
1793-5245,
10.1142/S1793524521500674
|
|
862.
|
M. L. Diagne, H. Rwezaura, S. Y. Tchoumi, J. M. Tchuenche, Jan Rychtar,
A Mathematical Model of COVID-19 with Vaccination and Treatment,
2021,
2021,
1748-6718,
1,
10.1155/2021/1250129
|
|
863.
|
Akriti Srivastava, Prashant K. Srivastava,
Nonlinear dynamics of a SIRI model incorporating the impact of information and saturated treatment with optimal control,
2022,
137,
2190-5444,
10.1140/epjp/s13360-022-03201-9
|
|
864.
|
Fahad Al Basir, Pankaj Kumar Tiwari, Sudip Samanta,
Effects of incubation and gestation periods in a prey–predator model with infection in prey,
2021,
190,
03784754,
449,
10.1016/j.matcom.2021.05.035
|
|
865.
|
Shewafera Wondimagegnhu Teklu, Koya Purnachandra Rao, Jan Rychtar,
HIV/AIDS-Pneumonia Codynamics Model Analysis with Vaccination and Treatment,
2022,
2022,
1748-6718,
1,
10.1155/2022/3105734
|
|
866.
|
Hoang Pham,
Mathematical Modeling the Time-Delay Interactions between Tumor Viruses and the Immune System with the Effects of Chemotherapy and Autoimmune Diseases,
2022,
10,
2227-7390,
756,
10.3390/math10050756
|
|
867.
|
Reuben Iortyer Gweryina, Chinwendu Emilian Madubueze, Vijay Pal Bajiya, Filibus Esson Esla,
Modeling and analysis of tuberculosis and pneumonia co-infection dynamics with cost-effective strategies,
2023,
10,
26667207,
100210,
10.1016/j.rico.2023.100210
|
|
868.
|
Owade Kennedy Jackob, Okaka Akinyi, Frankline Tireito, Filippo Cacace,
A Mathematical Model on the Dynamics of In-Host Infection Cholera Disease with Vaccination,
2023,
2023,
1607-887X,
1,
10.1155/2023/1465228
|
|
869.
|
Fatima Sulayman, Mohd Hafiz Mohd, Farah Aini Abdullah,
2021,
Chapter 10,
978-981-16-2628-9,
197,
10.1007/978-981-16-2629-6_10
|
|
870.
|
Berin Karaman Mayack,
Modeling disruption of
Apis mellifera
(honey bee) odorant‐binding protein function with high‐affinity binders
,
2023,
0952-3499,
10.1002/jmr.3008
|
|
871.
|
Asghar Atifa, Muhammad Altaf Khan, Kulpash Iskakova, Fuad S. Al-Duais, Irshad Ahmad,
Mathematical modeling and analysis of the SARS-Cov-2 disease with reinfection,
2022,
98,
14769271,
107678,
10.1016/j.compbiolchem.2022.107678
|
|
872.
|
Sanjoy Basu, R. Prem Kumar, P.K. Santra, G.S. Mahapatra, A.A. Elsadany,
Preventive control strategy on second wave of Covid-19 pandemic model incorporating lock-down effect,
2022,
61,
11100168,
7265,
10.1016/j.aej.2021.12.066
|
|
873.
|
Sangeeta Kumari, Ranjit Kumar Upadhyay,
Exploring the behavior of malware propagation on mobile wireless sensor networks: Stability and control analysis,
2021,
190,
03784754,
246,
10.1016/j.matcom.2021.05.027
|
|
874.
|
Madhuri Majumder, Pankaj Kumar Tiwari, Samares Pal,
Impact of saturated treatments on HIV-TB dual epidemic as a consequence of COVID-19: optimal control with awareness and treatment,
2022,
109,
0924-090X,
143,
10.1007/s11071-022-07395-6
|
|
875.
|
Shaoli Wang, Tengfei Wang, Yuming Chen,
Bifurcations and Bistability of an Age-Structured Viral Infection Model with a Nonmonotonic Immune Response,
2022,
32,
0218-1274,
10.1142/S0218127422501516
|
|
876.
|
Abdurrahman Abdulhamid, Nafiu Hussaini, Salihu S. Musa, Daihai He,
Mathematical analysis of Lassa fever epidemic with effects of environmental transmission,
2022,
35,
22113797,
105335,
10.1016/j.rinp.2022.105335
|
|
877.
|
Komal Bansal, Trilok Mathur, Shivi Agarwal,
Fractional-order crime propagation model with non-linear transmission rate,
2023,
169,
09600779,
113321,
10.1016/j.chaos.2023.113321
|
|
878.
|
Bruno Buonomo, Alberto d'Onofrio, Semu Mitiku Kassa, Yetwale Hailu Workineh,
Modeling the effects of information‐dependent vaccination behavior on meningitis transmission,
2022,
45,
0170-4214,
732,
10.1002/mma.7808
|
|
879.
|
Praise-God Uchechukwu Madueme, Faraimunashe Chirove,
Understanding the transmission pathways of Lassa fever: A mathematical modeling approach,
2023,
8,
24680427,
27,
10.1016/j.idm.2022.11.010
|
|
880.
|
Joshua A. Mwasunda, Chacha S. Chacha, Mussa A. Stephano, Jacob I. Irunde,
Modelling cystic echinococcosis and bovine cysticercosis co-infections with optimal control,
2022,
41,
2238-3603,
10.1007/s40314-022-02034-7
|
|
881.
|
Sangeeta Saha, Protyusha Dutta, Guruprasad Samanta,
Dynamical behavior of SIRS model incorporating government action and public response in presence of deterministic and fluctuating environments,
2022,
164,
09600779,
112643,
10.1016/j.chaos.2022.112643
|
|
882.
|
Shikha Jain, Sachin Kumar,
Chaos detection in SIR model with modified Beddington–De Angelis type incidence rate and saturated treatment,
2021,
12,
1793-9623,
2150049,
10.1142/S1793962321500495
|
|
883.
|
Hilda Fahlena, Rudy Kusdiantara, Nuning Nuraini, Edy Soewono,
Dynamical analysis of two-pathogen coinfection in influenza and other respiratory diseases,
2022,
155,
09600779,
111727,
10.1016/j.chaos.2021.111727
|
|
884.
|
Kanica Goel, ,
A nonlinear SAIR epidemic model: Effect of awareness class, nonlinear incidences, saturated treatment and time delay,
2022,
0035-5038,
10.1007/s11587-022-00720-6
|
|
885.
|
Hai-Feng Huo, Li-Na Gu, Hong Xiang,
MODELLING AND ANALYSIS OF AN HIV/AIDS MODEL WITH DIFFERENT WINDOW PERIOD AND TREATMENT,
2021,
11,
2156-907X,
1927,
10.11948/20200279
|
|
886.
|
Kanica Goel, Abhishek Kumar, ,
Stability analysis of a logistic growth epidemic model with two explicit time-delays, the nonlinear incidence and treatment rates,
2022,
68,
1598-5865,
1901,
10.1007/s12190-021-01601-1
|
|
887.
|
Sacrifice Nana-Kyere, Francis Agyei Boateng, Paddy Jonathan, Anthony Donkor, Glory Kofi Hoggar, Banon Desmond Titus, Daniel Kwarteng, Isaac Kwasi Adu, Andrei Korobeinikov,
Global Analysis and Optimal Control Model of COVID-19,
2022,
2022,
1748-6718,
1,
10.1155/2022/9491847
|
|
888.
|
Sulaimon F. Abimbade, Samson Olaniyi, Olusegun A. Ajala,
Recurrent malaria dynamics: insight from mathematical modelling,
2022,
137,
2190-5444,
10.1140/epjp/s13360-022-02510-3
|
|
889.
|
Carl Corcoran, Alan Hastings,
A Low-Dimensional Network Model for an SIS Epidemic: Analysis of the Super Compact Pairwise Model,
2021,
83,
0092-8240,
10.1007/s11538-021-00907-2
|
|
890.
|
Fikru Shiferaw Tessema, Purnachandra Rao Koya, Boka Kumsa Bole, Antonio Di Crescenzo,
Optimal Control and Cost-Effectiveness Analysis of Cholera with Vaccination,
2022,
2022,
2314-4785,
1,
10.1155/2022/1705277
|
|
891.
|
Calvin Tadmon, Jacques Ndé Kengne,
Mathematical analysis of a model of Ebola disease with control measures,
2022,
15,
1793-5245,
10.1142/S1793524522500486
|
|
892.
|
H. Rwezaura, M. L. Diagne, A. Omame, A. L. de Espindola, J. M. Tchuenche,
Mathematical modeling and optimal control of SARS-CoV-2 and tuberculosis co-infection: a case study of Indonesia,
2022,
8,
2363-6203,
5493,
10.1007/s40808-022-01430-6
|
|
893.
|
Stephen Edward Mwaijande, Godfrey Edward Mpogolo, Chen Mengxin,
Modeling the Transmission Dynamics of Hepatitis A with Combined Vaccination and Sanitation Mitigation,
2023,
2023,
1748-6718,
1,
10.1155/2023/1203049
|
|
894.
|
Chris von Csefalvay,
2023,
9780323953894,
217,
10.1016/B978-0-32-395389-4.00016-5
|
|
895.
|
Calistus N. Ngonghala,
Assessing the impact of insecticide-treated nets in the face of insecticide resistance on malaria control,
2022,
555,
00225193,
111281,
10.1016/j.jtbi.2022.111281
|
|
896.
|
Zenebe Shiferaw Kifle, Legesse Lemecha Obsu,
Optimal control analysis of a COVID-19 model,
2023,
31,
2769-0911,
10.1080/27690911.2023.2173188
|
|
897.
|
Olumuyiwa James Peter, Afeez Abidemi, Mayowa M. Ojo, Tawakalt Abosede Ayoola,
Mathematical model and analysis of monkeypox with control strategies,
2023,
138,
2190-5444,
10.1140/epjp/s13360-023-03865-x
|
|
898.
|
Md Biplob Hossain, Masud M A, Aruk Kumar Sikder, Md Hamidul Islam,
How big of an impact do asymptomatic people have on the dynamics of an epidemic?,
2023,
25900544,
100093,
10.1016/j.csfx.2023.100093
|
|
899.
|
Sumit Kumar, Sandeep Sharma, Atul Kashyap, Nitu Kumari, Ravi P. Agarwal,
Modelling the effect of environmental pollution on Zika outbreak: A case study of Brazil,
2023,
0,
1937-1632,
0,
10.3934/dcdss.2023048
|
|
900.
|
Xin-You Meng, Chong-Yang Yin,
DYNAMICS OF A DENGUE FEVER MODEL WITH UNREPORTED CASES AND ASYMPTOMATIC INFECTED CLASSES IN SINGAPORE, 2020,
2023,
13,
2156-907X,
782,
10.11948/20220111
|
|
901.
|
MICHAEL CHAPWANYA, ERIN KENYON,
ON MATHEMATICAL MODELING OF THE TRANSMISSION OF GRAPEVINE LEAFROLL-ASSOCIATED VIRUS 3 BY THE VINE MEALYBUG, PLANOCOCCUS FICUS,
2023,
31,
0218-3390,
185,
10.1142/S0218339023500092
|
|
902.
|
Oke I. Idisi, Tunde T. Yusuf, Kolade M. Owolabi, Bolanle A. Ojokoh,
A bifurcation analysis and model of Covid-19 transmission dynamics with post-vaccination infection impact,
2023,
3,
27724425,
100157,
10.1016/j.health.2023.100157
|
|
903.
|
Calistus N. Ngonghala, Abba B. Gumel,
2023,
9780323950640,
221,
10.1016/B978-0-323-95064-0.00013-0
|
|
904.
|
A. K. Misra, Soumitra Pal, Rabindra Kumar Gupta,
Modeling the Effect of TV and Social Media Advertisements on the Dynamics of Vector-Borne Disease Malaria,
2023,
33,
0218-1274,
10.1142/S0218127423500335
|
|
905.
|
Baba Seidu, Oluwole Daniel Makinde, Ibrahim Yakubu Seini, Andrew Pickering,
On the Optimal Control of HIV-TB Co-Infection and Improvement of Workplace Productivity,
2023,
2023,
1607-887X,
1,
10.1155/2023/3716235
|
|
906.
|
S.Y. Tchoumi, N.Y. Njintang, J.C. Kamgang, J.M. Tchuenche,
Malaria and malnutrition in children: A mathematical model,
2023,
27731863,
100013,
10.1016/j.fraope.2023.100013
|
|
907.
|
Francis Mugabi, Kevin J. Duffy,
Epidemiological drivers and control strategies for African swine fever transmission cycles at a wildlife-livestock interface,
2023,
481,
03043800,
110344,
10.1016/j.ecolmodel.2023.110344
|
|
908.
|
Ali Algarni, Afnan D. Al Agha, Aisha Fayomi, Hakim Al Garalleh,
Kinetics of a Reaction-Diffusion Mtb/SARS-CoV-2 Coinfection Model with Immunity,
2023,
11,
2227-7390,
1715,
10.3390/math11071715
|
|
909.
|
Ranjit Kumar Upadhyay, Sattwika Acharya,
Modeling the transmission dynamics of a time-delayed epidemic model with saturated treatment rate,
2023,
16,
1793-5245,
10.1142/S1793524522501224
|
|
910.
|
Na Pang,
Nonlinear neural networks adaptive control for a class of fractional-order tuberculosis model,
2023,
20,
1551-0018,
10464,
10.3934/mbe.2023461
|
|
911.
|
Abdulai Kailan Suhuyini, Baba Seidu,
A mathematical model on the transmission dynamics of typhoid fever with treatment and booster vaccination,
2023,
9,
2297-4687,
10.3389/fams.2023.1151270
|
|
912.
|
Zviiteyi Chazuka, Chinwendu E. Madubueze, Chidozie W. Chukwu, Shalaika M. Chikuni,
Stability Analysis of a Bacterial Meningitis Model with Saturated Incidence and Treatment Default,
2023,
15,
2070-0482,
323,
10.1134/S2070048223020187
|
|
913.
|
Omoloye M.A., Olatinwo M., Ayanlere O.F., Adesanya A.O., Emiola O.K.S., Umar A.M.,
Determining Sensitive Parameters in the Transmission Dynamics of Malaria Disease Using Mathematical Model Approach,
2023,
6,
2689-5323,
89,
10.52589/AJMSS-2IL0EKHK
|
|
914.
|
Y. A. Adi, N. Irsalinda, A. Wiraya, S. Sugiyarto, Z. A. Rafsanjani,
An epidemic model with viral mutations and vaccine interventions,
2023,
10,
23129794,
311,
10.23939/mmc2023.02.311
|
|
915.
|
A. K. Misra, Jyoti Maurya,
Allocation of hospital beds on the emergence of new infectious disease: A mathematical model,
2023,
33,
1054-1500,
043125,
10.1063/5.0133703
|
|
916.
|
Sileshi Sintayehu Sharbayta, Henok Desalegn Desta, Tadesse Abdi, Fahad Al Basir,
Mathematical Modelling of COVID-19 Transmission Dynamics with Vaccination: A Case Study in Ethiopia,
2023,
2023,
1607-887X,
1,
10.1155/2023/2972164
|
|
917.
|
Saheed Ajao, Isaac Olopade, Titilayo Akinwumi, Sunday Adewale, Adelani Adesanya,
Understanding the Transmission Dynamics and Control of HIV Infection: A Mathematical Model Approach,
2023,
2714-4704,
1389,
10.46481/jnsps.2023.1389
|
|
918.
|
Rubayyi T. Alqahtani, Salihu S. Musa, Mustafa Inc,
Modeling the role of public health intervention measures in halting the transmission of monkeypox virus,
2023,
8,
2473-6988,
14142,
10.3934/math.2023723
|
|
919.
|
Maranya M. Mayengo,
Modeling the prevalence of alcoholism with compulsory isolation treatment facilities,
2023,
48,
22113797,
106428,
10.1016/j.rinp.2023.106428
|
|
920.
|
Mamadou Lamine Diagne, Herieth Rwezaura, S.A. Pedro, Jean Michel Tchuenche,
Theoretical Analysis of a Measles Model with Nonlinear Incidence Functions,
2022,
1556-5068,
10.2139/ssrn.4160579
|
|
921.
|
Dipo Aldila, Chita Aulia Puspadani, Rahmi Rusin,
Mathematical analysis of the impact of community ignorance on the population dynamics of dengue,
2023,
9,
2297-4687,
10.3389/fams.2023.1094971
|
|
922.
|
Shuimei Tang, Shujing Gao, Fumin Zhang, Yujiang Liu,
Role of vector resistance and grafting infection in Huanglongbing control models,
2023,
24680427,
10.1016/j.idm.2023.04.006
|
|
923.
|
Shewafera Wondimagegnhu Teklu,
Analysis of fractional order model on higher institution students’ anxiety towards mathematics with optimal control theory,
2023,
13,
2045-2322,
10.1038/s41598-023-33961-y
|
|
924.
|
Chukwuemeka O. Agwu, Andrew Omame, Simeon C. Inyama,
Analysis of Mathematical Model of Diabetes and Tuberculosis Co-infection,
2023,
9,
2349-5103,
10.1007/s40819-023-01515-5
|
|
925.
|
Muhammad Sinan, Nadiyah Hussain Alharthi,
Mathematical Analysis of Fractal-Fractional Mathematical Model of COVID-19,
2023,
7,
2504-3110,
358,
10.3390/fractalfract7050358
|
|
926.
|
Sarita Bugalia, Jai Prakash Tripathi,
Assessing potential insights of an imperfect testing strategy: Parameter estimation and practical identifiability using early COVID-19 data in India,
2023,
10075704,
107280,
10.1016/j.cnsns.2023.107280
|
|
927.
|
Belela Samuel Kotola, Shewafera Wondimagegnhu Teklu, Yohannes Fissha Abebaw, Oluwole Daniel Makinde,
Bifurcation and optimal control analysis of HIV/AIDS and COVID-19 co-infection model with numerical simulation,
2023,
18,
1932-6203,
e0284759,
10.1371/journal.pone.0284759
|
|
928.
|
Rabindra Kumar Gupta, Rajanish Kumar Rai, Pankaj Kumar Tiwari, Arvind Kumar Misra, Maia Martcheva,
A mathematical model for the impact of disinfectants on the control of bacterial diseases,
2023,
17,
1751-3758,
10.1080/17513758.2023.2206859
|
|
929.
|
Tesfaye Tefera Mamo,
Bifurcation analysis of hepatitis B virus with non-cytolytic cure process on infected liver and blood cells,
2023,
13,
2045-2322,
10.1038/s41598-023-27468-9
|
|
930.
|
Shivram Sharma, Praveen Kumar Sharma,
Stability analysis of an SIR model with alert class modified saturated incidence rate and Holling functional type-II treatment,
2023,
11,
2544-7297,
10.1515/cmb-2022-0145
|
|
931.
|
Kenneth DUKUZA,
Bifurcation analysis of a computer virus propagation model,
2021,
50,
2651-477X,
1384,
10.15672/hujms.747872
|
|
932.
|
Sangeeta Saha, G. P. Samanta,
2023,
Chapter 10,
978-3-031-17777-4,
211,
10.1007/978-3-031-17778-1_10
|
|
933.
|
Shilpa Umdekar, Praveen Kumar Sharma, Shivram Sharma,
An SEIR model with modified saturated incidence rate and Holling type II treatment function,
2023,
11,
2544-7297,
10.1515/cmb-2022-0146
|
|
934.
|
Baaba A. Danquah, Faraimunashe Chirove, Jacek Banasiak,
Controlling malaria in a population accessing counterfeit antimalarial drugs,
2023,
20,
1551-0018,
11895,
10.3934/mbe.2023529
|
|
935.
|
Abayomi Ayotunde Ayoade, Mohammed Olanrewaju Ibrahim,
Modeling the dynamics and control of rabies in dog population within and around Lagos, Nigeria,
2023,
138,
2190-5444,
10.1140/epjp/s13360-023-03993-4
|
|
936.
|
Hui Cao, Baojun Song, Yicang Zhou,
Treatment strategies for the latent tuberculosis infections,
2023,
86,
0303-6812,
10.1007/s00285-023-01927-3
|
|
937.
|
Oluwaseun F. Egbelowo, Justin B. Munyakazi, Phumlani G. Dlamini, Fadekemi J. Osaye, Simphiwe M. Simelane,
Modeling visceral leishmaniasis and tuberculosis co-infection dynamics,
2023,
9,
2297-4687,
10.3389/fams.2023.1153666
|
|
938.
|
D. B. Eshmamatova, Sh. J. Seytov, N. B. Narziev,
Basins of Fixed Points for Composition of the Lotka–Volterra Mappings and Their Classification,
2023,
44,
1995-0802,
558,
10.1134/S1995080223020142
|
|
939.
|
Oluwakemi Abiodun, Adebimpe Olukayode, James Ndako,
2023,
Mathematical Modeling and Its Methodological Approach: Application to Infectious Disease,
979-8-3503-2478-5,
1,
10.1109/SEB-SDG57117.2023.10124470
|
|
940.
|
Abdulfatai Atte Momoh, Dione Déthié, Nafisa Sulaiman Isah, Washachi Jacob Dekera, James A. Adewale, Ali Inalegwu Michael,
Mathematical modeling and optimal control of a vector-borne rice yellow mottle virus disease,
2023,
2195-268X,
10.1007/s40435-023-01188-4
|
|
941.
|
Asymptotic Study of Divorce Model with Pre-Marriage Preparedness as Control,
2023,
17,
1823-8343,
113,
10.47836/mjms.17.2.03
|
|
942.
|
Zenebe Shiferaw Kifle, Legesse Lemecha Obsu,
Co-dynamics of COVID-19 and TB with COVID-19 vaccination and exogenous reinfection for TB: An optimal control application,
2023,
24680427,
10.1016/j.idm.2023.05.005
|
|
943.
|
Mostak Ahmed, Md. Harun-Or-Rashid Khan, M.M. Alam Sarker,
COVID-19 SIR model: Bifurcation analysis and optimal control,
2023,
26667207,
100246,
10.1016/j.rico.2023.100246
|
|
944.
|
Anindita Henindya Permatasari, Robertus Heri Soelistyo Utomo,
2023,
2760,
0094-243X,
020013,
10.1063/5.0140433
|
|
945.
|
Moses Olayemi Adeyemi, Temitayo Olabisi Oluyo,
Mathematical modeling for the control of fly-borne mastitis disease in cattle,
2023,
9,
2297-4687,
10.3389/fams.2023.1171157
|
|
946.
|
Sarkhosh Seddighi Chaharborj, Shantia Yarahmadian,
On the role of optimization in the cancer treatment by radiation therapy (RT),
2023,
0170-4214,
10.1002/mma.9341
|
|
947.
|
Dereje Gutema Edossa, Alemu Geleta Wedajo, Purnachandra Rao Koya, Andrei Korobeinikov,
Optimal Combinations of Control Strategies and Cost-Effectiveness Analysis of Dynamics of Endemic Malaria Transmission Model,
2023,
2023,
1748-6718,
1,
10.1155/2023/7677951
|
|
948.
|
I. Ratti, P. Kalra,
Study of Disease Dynamics of Co-infection of Rotavirus and Malaria with Control Strategies,
2023,
17,
1823-8343,
151,
10.47836/mjms.17.2.05
|
|
949.
|
Reuben Iortyer Gweryina, Godwin Nyiutaha Imandeh, Emmanuel Edache Idoko,
A new mathematical model for transmitting and controlling rat-bite fever using the theory of optimal control,
2023,
27724425,
100203,
10.1016/j.health.2023.100203
|
|
950.
|
Dilfuza Bakhramovna Eshmamatova, Rasul Nabiyevich Ganikhodzhaev, Mokhbonu Akrom Khizi Tadhzieva,
2023,
2997,
0094-243X,
020034,
10.1063/5.0144887
|
|
951.
|
Arjun Kumar, Ashvini Gupta, Uma S. Dubey, Balram Dubey,
Stability and bifurcation analysis of an infectious disease model with different optimal control strategies,
2023,
03784754,
10.1016/j.matcom.2023.05.024
|
|
952.
|
Shaoli Wang, Tengfei Wang, Ya-Nen Qi, Fei Xu,
Backward bifurcation, basic reinfection number and robustness of an SEIRE epidemic model with reinfection,
2023,
16,
1793-5245,
10.1142/S1793524522501327
|
|
953.
|
J. NAYEEM, C. N. PODDER, M. A. SALEK,
SENSITIVITY ANALYSIS AND IMPACT OF AN IMPERFECT VACCINE OF TWO STRAINS OF HEPATITIS B VIRUS INFECTION,
2023,
31,
0218-3390,
437,
10.1142/S0218339023500158
|
|
954.
|
Abou Bakari Diabaté, Boureima Sangaré, Ousmane Koutou,
Optimal control analysis of a COVID-19 and Tuberculosis (TB) co-infection model with an imperfect vaccine for COVID-19,
2023,
2254-3902,
10.1007/s40324-023-00330-8
|
|
955.
|
Ling Xue, Xiulei Jin, Huaiping Zhu,
Assessing the impact of serostatus-dependent immunization on mitigating the spread of dengue virus,
2023,
87,
0303-6812,
10.1007/s00285-023-01944-2
|
|
956.
|
Gabriel Kolaye Guilsou, Moulay-Ahmed Aziz-Alaoui, Raymond Houé Ngouna, Bernard Archimede, Samuel Bowong,
Gaining Profound Knowledge of Cholera Outbreak: The Significance of the Allee Effect on Bacterial Population Growth and Its Implications for Human-Environment Health,
2023,
15,
2071-1050,
10384,
10.3390/su151310384
|
|
957.
|
Kalyan Kumar Pal, Rajanish Kumar Rai, Pankaj Kumar Tiwari, Yun Kang,
Role of incentives on the dynamics of infectious diseases: implications from a mathematical model,
2023,
138,
2190-5444,
10.1140/epjp/s13360-023-04163-2
|
|
958.
|
Yingying Zhang, Chentong Li,
Bifurcation of an SIRS Model with a Modified Nonlinear Incidence Rate,
2023,
11,
2227-7390,
2916,
10.3390/math11132916
|
|
959.
|
Conghui Xu, Yongguang Yu, Guojian Ren, Yuqin Sun, Xinhui Si,
Stability analysis and optimal control of a fractional-order generalized SEIR model for the COVID-19 pandemic,
2023,
00963003,
128210,
10.1016/j.amc.2023.128210
|
|
960.
|
Hasib Khan, Jehad Alzabut, Wafa F. Alfwzan, Haseena Gulzar,
Nonlinear Dynamics of a Piecewise Modified ABC Fractional-Order Leukemia Model with Symmetric Numerical Simulations,
2023,
15,
2073-8994,
1338,
10.3390/sym15071338
|
|
961.
|
Mahmoud H. DarAssi, Irfan Ahmad, Mutum Zico Meetei, Mansoor Alsulami, Muhammad Altaf Khan, Elsayed M. Tag-eldin,
The impact of the face mask on SARS-CoV-2 disease: Mathematical modeling with a case study,
2023,
51,
22113797,
106699,
10.1016/j.rinp.2023.106699
|
|
962.
|
Tatiana Girón-Carabalí, Juddy-Heliana Arias-Castro, Héctor-Jairo Martínez-Romero,
Modelo matemático para la dinámica de la tuberculosis considerando latentes de bajo riesgo,
2023,
47,
2344-8350,
138,
10.14483/23448350.20549
|
|
963.
|
Kai Zhang, Ling Xue, Xuezhi Li, Daihai He,
Mathematical insights into the influence of interventions on sexually transmitted diseases,
2023,
74,
0044-2275,
10.1007/s00033-023-02028-3
|
|
964.
|
Shikha Saha, Amit Kumar Saha,
Modeling the dynamics of COVID-19 in the presence of Delta and Omicron variants with vaccination and non-pharmaceutical interventions,
2023,
9,
24058440,
e17900,
10.1016/j.heliyon.2023.e17900
|
|
965.
|
Dipo Aldila, Nadya Awdinda, Faishal F. Herdicho, Meksianis Z. Ndii, Chidozie W. Chukwu,
Optimal control of pneumonia transmission model with seasonal factor: Learning from Jakarta incidence data,
2023,
24058440,
e18096,
10.1016/j.heliyon.2023.e18096
|
|
966.
|
Xinxin Wang, Xiaoyun Wang, Fengqin Zhang,
DYNAMIC ANALYSIS OF A DRUG TRANSMISSION MODEL WITH ANTI-DRUG EDUCATION AND MEDIA COVERAGE,
2023,
13,
2156-907X,
2184,
10.11948/20220430
|
|
967.
|
Ahmed Alshehri, Saif Ullah,
Mathematical analysis of monkeypox infection with optimal control analysis: A case study with a new outbreak in the United States,
2023,
0170-4214,
10.1002/mma.9505
|
|
968.
|
Slavi Georgiev,
Mathematical Identification Analysis of a Fractional-Order Delayed Model for Tuberculosis,
2023,
7,
2504-3110,
538,
10.3390/fractalfract7070538
|
|
969.
|
Ibrahim M. Fanuel, Silas Mirau, Damian Kajunguri, Francis Moyo,
Mathematical model to study the impact of anthropogenic activities on forest biomass and forest-dependent wildlife population,
2023,
2195-268X,
10.1007/s40435-023-01265-8
|
|
970.
|
Akriti Srivastava, Prashant K. Srivastava,
2023,
Chapter 4,
978-3-031-33049-0,
57,
10.1007/978-3-031-33050-6_4
|
|
971.
|
Sándor Kovács, Szilvia György, Noémi Gyúró,
2023,
Chapter 1,
978-3-031-33049-0,
1,
10.1007/978-3-031-33050-6_1
|
|
972.
|
A.K. Misra, Anjali Jha,
How to combat atmospheric carbon dioxide along with development activities? A mathematical model,
2023,
01672789,
133861,
10.1016/j.physd.2023.133861
|
|
973.
|
Zenebe Shiferaw Kifle, Legesse Lemecha Obsu,
Mathematical modeling and analysis of COVID-19 and TB co-dynamics,
2023,
9,
24058440,
e18726,
10.1016/j.heliyon.2023.e18726
|
|
974.
|
Miftahul Firdaus Islami, Paian Sianturi, Hadi Sumarno,
Analyzing the Stability and Sensitivity of the Deterministic SVEQ1IQ2R Model for the Spread of COVID-19,
2023,
23074108,
10.1016/j.kjs.2023.03.011
|
|
975.
|
Carlos Andrés Trujillo-Salazar, Gerard Olivar-Tost, Deissy Milena Sotelo-Castelblanco,
Mathematical Model for the Biological Control of the Coffee Berry Borer Hypothenemus hampei through Ant Predation,
2023,
14,
2075-4450,
675,
10.3390/insects14080675
|
|
976.
|
A. Jabbari, M. Lotfi, H. Kheiri, S. Khajanchi,
Mathematical analysis of the dynamics of a fractional‐order tuberculosis epidemic in a patchy environment under the influence of re‐infection,
2023,
0170-4214,
10.1002/mma.9532
|
|
977.
|
Yanshu Wang, Hailiang Zhang,
Dynamical Analysis of an Age-Structured SVEIR Model with Imperfect Vaccine,
2023,
11,
2227-7390,
3526,
10.3390/math11163526
|
|
978.
|
Shewafera Wondimagegnhu Teklu, Yohannes Fissha Abebaw, Birhanu Baye Terefe, Dejen Ketema Mamo,
HIV/AIDS and TB co-infection deterministic model bifurcation and optimal control analysis,
2023,
41,
23529148,
101328,
10.1016/j.imu.2023.101328
|
|
979.
|
Berhe Nerea Kahsay, Oluwole D. Makinde, Keshlan S. Govinder,
Ecoepidemiological Model and Optimal Control Analysis of Tomato Yellow Leaf Curl Virus Disease in Tomato Plant,
2023,
2023,
1687-0042,
1,
10.1155/2023/4066236
|
|
980.
|
Fahad Al Basir, Konstantin B. Blyuss, Ezio Venturino,
Stability and bifurcation analysis of a multi-delay model for mosaic disease transmission,
2023,
8,
2473-6988,
24545,
10.3934/math.20231252
|
|
981.
|
Zhongcai Zhu, Yuanxian Hui, Linchao Hu,
The impact of predators of mosquito larvae on Wolbachia spreading dynamics,
2023,
17,
1751-3758,
10.1080/17513758.2023.2249024
|
|
982.
|
Kumama Regassa Cheneke,
2023,
10.5772/intechopen.112600
|
|
983.
|
Ibrahim M. Fanuel, Silas Mirau, Maranya Mayengo, Francis Moyo,
Fuzzy modelling on the depletion of forest biomass and forest–dependent wildlife population,
2023,
27731863,
100033,
10.1016/j.fraope.2023.100033
|
|
984.
|
Ximei Wang, Xinzhi Ren, Yan Wu, Yong Li,
Dynamics and data fitting of a time-delayed SIRS hepatitis B model with psychological inhibition factor and limited medical resources,
2024,
17,
1793-5245,
10.1142/S1793524523500201
|
|
985.
|
ARVIND KUMAR MISRA, MAMTA KUMARI,
MODELING THE EFFECTS OF TV AND SOCIAL MEDIA ADVERTISEMENTS ON DIABETES,
2023,
31,
0218-3390,
1099,
10.1142/S0218339023500377
|
|
986.
|
Ihsan Ullah, Saeed Ahmad, Zareen A. Khan, Mostafa Zahri,
Global behaviour of a tuberculosis model with difference in awareness and treatment adherence levels,
2023,
80,
11100168,
315,
10.1016/j.aej.2023.08.052
|
|
987.
|
N.I. Akinwande, S.A. Somma, R.O. Olayiwola, T.T. Ashezua, R.I. Gweryina, F.A. Oguntolu, O.N. Abdurahman, F.S. Kaduna, T.P. Adajime, F.A. Kuta, S. Abdulrahman, A.I. Enagi, G.A. Bolarin, M.D. Shehu, A. Usman,
Modelling the impacts of media campaign and double dose vaccination in controlling COVID-19 in Nigeria,
2023,
80,
11100168,
167,
10.1016/j.aej.2023.08.053
|
|
988.
|
Rwat Solomon Isa, Sabastine Emmanuel, Nanle Tanko Danat, Samuel Hwere Tsok,
MATHEMATICAL MODELING OF CORRUPTION DYNAMICS: EXAMINING THE REINTEGRATION OF FORMERLY CORRUPT INDIVIDUALS,
2023,
7,
2616-1370,
1,
10.33003/fjs-2023-0704-1888
|
|
989.
|
Mohamed Amouch, Noureddine Karim,
Fractional-order mathematical modeling of COVID-19 dynamics with different types of transmission,
2023,
0,
2155-3289,
0,
10.3934/naco.2023019
|
|
990.
|
Qigui Yang, Jiabing Huang,
Dynamics Analysis of an 11-Dimensional Multiscale COVID-19 Model with Interval Parameters,
2023,
33,
0218-1274,
10.1142/S0218127423501407
|
|
991.
|
Mussa A. Stephano, Maranya M. Mayengo, Jacob I. Irunde, Dmitry Kuznetsov,
Sensitivity analysis and parameters estimation for the transmission of lymphatic filariasis,
2023,
9,
24058440,
e20066,
10.1016/j.heliyon.2023.e20066
|
|
992.
|
Shomaila Mazhar, Zahid Ullah, Syed Inayat Ali Shah, Noor Badshah,
Development of a probabilistic model for Covid-19 dynamics with consideration of non-severe and severe infections,
2023,
82,
11100168,
126,
10.1016/j.aej.2023.09.067
|
|
993.
|
Mona Zevika, Rudy Kusdiantara, Nuning Nuraini, Edy Soewono,
A study on Zika–Dengue coinfection model with microcephaly newborn dynamics,
2023,
175,
09600779,
114019,
10.1016/j.chaos.2023.114019
|
|
994.
|
Anil K. Vashishth, Komal Basaiti,
Modeling the effect of non-pharmaceutical measures and vaccination on the spread of two variants of COVID-19 in India,
2024,
217,
03784754,
139,
10.1016/j.matcom.2023.10.008
|
|
995.
|
Shewafera Wondimagegnhu Teklu, D. Easwaramoorthy,
Analysis of HBV and COVID-19 Coinfection Model with Intervention Strategies,
2023,
2023,
1748-6718,
1,
10.1155/2023/6908757
|
|
996.
|
Yan Li, Laique Zada, Emad A. A. Ismail, Fuad A. Awwad, Ahmed M. Hassan,
Assessing the Impact of Time-Varying Optimal Vaccination and Non-Pharmaceutical Interventions on the Dynamics and Control of COVID-19: A Computational Epidemic Modeling Approach,
2023,
11,
2227-7390,
4253,
10.3390/math11204253
|
|
997.
|
Mst Sebi Khatun, Samhita Das, Pritha Das,
Dynamics and control of an SITR COVID-19 model with awareness and hospital bed dependency,
2023,
175,
09600779,
114010,
10.1016/j.chaos.2023.114010
|
|
998.
|
Joshua A. Mwasunda, Jacob I. Irunde,
Stability and bifurcation analysis of a Taenia saginata model with control measures,
2023,
13,
26667207,
100311,
10.1016/j.rico.2023.100311
|
|
999.
|
Bruno Buonomo, Rossella Della Marca,
A behavioural vaccination model with application to meningitis spread in Nigeria,
2024,
125,
0307904X,
334,
10.1016/j.apm.2023.09.031
|
|
1000.
|
Pattarapan Kumpai, Chairat Modnak,
Mathematical Analysis and Optimal Cost-effective Control of Brucellosis and Bovine Tuberculosis Co-infection,
2023,
9,
2349-5103,
10.1007/s40819-023-01599-z
|
|
1001.
|
Matthew O. Adewole, Farah A. Abdullah, Majid K.M. Ali,
Dynamics of hand, foot and mouth disease in children under 15 years old: A case study of Malaysia using age-structured modelling approach,
2024,
125,
0307904X,
728,
10.1016/j.apm.2023.10.002
|
|
1002.
|
Tesfaneh Debele Batu, Legesse Lemecha Obsu, Chernet Tuge Deressa,
Co-infection dynamics of COVID-19 and HIV/AIDS,
2023,
13,
2045-2322,
10.1038/s41598-023-45520-6
|
|
1003.
|
Bapin Mondal, Abhijit Sarkar, Nazmul Sk,
Treatment of infected predators under the influence of fear-induced refuge,
2023,
13,
2045-2322,
10.1038/s41598-023-43021-0
|
|
1004.
|
Shewafera Wondimagegnhu Teklu, Abebe Addise Meshesha, Saif Ullah,
Analysis of tinea capitis epidemic fractional order model with optimal control theory,
2023,
42,
23529148,
101379,
10.1016/j.imu.2023.101379
|
|
1005.
|
Damtew Bewket Kitaro, Boka Kumsa Bole, Koya Purnachandra Rao,
Modeling and bifurcation analysis of tuberculosis with the multidrug-resistant compartment incorporating chemoprophylaxis treatment,
2023,
9,
2297-4687,
10.3389/fams.2023.1264201
|
|
1006.
|
Kassahun Getnet Mekonen, Fantu Mamo Aragaw, Kidist Talu Aknda,
Optimal control analysis on the impact of non-pharmaceutical interventions and vaccination on the dynamics of COVID-19,
2023,
13,
26667207,
100319,
10.1016/j.rico.2023.100319
|
|
1007.
|
María Guadalupe Vázquez-Peña, Cruz Vargas-De-León, Jorge Fernando Camacho-Pérez, Jorge Velázquez-Castro,
Analysis and Bayesian estimation of a model for Chikungunya dynamics with relapse: An outbreak in Acapulco, Mexico,
2023,
20,
1551-0018,
18123,
10.3934/mbe.2023805
|
|
1008.
|
N.S. Tibane, O.D. Makinde, R.L. Monaledi,
Dynamics of Covid-19 disease with its economic implications and optimal control: An exploitation of variational iteration method,
2023,
42,
23529148,
101356,
10.1016/j.imu.2023.101356
|
|
1009.
|
Muntaser Safan, Derdei Bichara, Kamuela E. Yong, Amira Alharthi, Carlos Castillo-Chavez,
Role of Differential Susceptibility and Infectiousness on the Dynamics of an SIRS Model for Malaria Transmission,
2023,
15,
2073-8994,
1950,
10.3390/sym15101950
|
|
1010.
|
Benjamin Idoko Omede, Olumuyiwa James Peter, William Atokolo, Bolarinwa Bolaji, Tawakalt Abosede Ayoola,
A mathematical analysis of the two-strain tuberculosis model dynamics with exogenous re-infection,
2023,
4,
27724425,
100266,
10.1016/j.health.2023.100266
|
|
1011.
|
Abhishek Kumar, Kanica Goel, ,
Dynamics of a nonlinear epidemic transmission model incorporating a class of hospitalized individuals: a qualitative analysis and simulation,
2023,
56,
1751-8113,
415601,
10.1088/1751-8121/acf9cf
|
|
1012.
|
Myriam Djoukwe Tapi, André Nana Yakam, Roger Tagne Wafo, Samuel Bowong,
Mathematical modelling and optimal control of production losses caused by Miridae,
2023,
18,
0973-5348,
28,
10.1051/mmnp/2023030
|
|
1013.
|
Nitesh Kumawat, Mubasher Rashid, Akriti Srivastava, Jai Prakash Tripathi,
Hysteresis and Hopf bifurcation: Deciphering the dynamics of an in-host model of SARS-CoV-2 with logistic target cell growth and sigmoidal immune response,
2023,
176,
09600779,
114151,
10.1016/j.chaos.2023.114151
|
|
1014.
|
Isaac Mwangi Wangari,
Emergence of a reversed backward bifurcation, reversed hysteresis effect, and backward bifurcation phenomenon in a COVID‐19 mathematical model,
2023,
0170-4214,
10.1002/mma.9745
|
|
1015.
|
Umar Tasiu MUSTAPHA, Abdurrahman ADO, Abdullahi YUSUF, Sania QURESHİ, Salihu Sabiu MUSA,
Mathematical dynamics for HIV infections with public awareness and viral load detectability,
2023,
3,
2791-8564,
256,
10.53391/mmnsa.1349472
|
|
1016.
|
Shivani Khare, Kunwer Singh Mathur, Krishna Pada Das,
Optimal control of deterministic and stochastic Eco-epidemic food adulteration model,
2023,
26667207,
100336,
10.1016/j.rico.2023.100336
|
|
1017.
|
Olusegun Michael Otunuga,
Analysis of the impacts of treatments in a HIV/AIDS and Tuberculosis co-infected population under random perturbations,
2023,
24680427,
10.1016/j.idm.2023.11.002
|
|
1018.
|
Song Huang, Zhijun Liu, Lianwen Wang,
Backward bifurcation and optimal control problem for a tuberculosis model incorporating LTBI detectivity and exogenous reinfection,
2023,
03784754,
10.1016/j.matcom.2023.11.018
|
|
1019.
|
Fatiha Najm, Radouane Yafia, My Ahmed Aziz Alaoui, Abdessamad Tridane, Lahcen Boukrim,
Mathematical analysis of an epidemic model with direct and indirect transmission modes and two delays,
2023,
10,
2353-0626,
10.1515/msds-2023-0103
|
|
1020.
|
Samuel Opoku, Baba Seidu, Philip N. A. Akuka,
A mathematical analysis of the impact of maternally derived immunity and double-dose vaccination on the spread and control of measles,
2023,
11,
2544-7297,
10.1515/cmb-2023-0106
|
|
1021.
|
Eric Abaa Baba Sandow, Baba Seidu, Stephen Abagna,
A Non-Standard Numerical Scheme for an Alcohol-Abuse Model with Induced-Complications,
2023,
24058440,
e22263,
10.1016/j.heliyon.2023.e22263
|
|
1022.
|
Carmelle Kabiwa Kadje, André Nana Yakam, Samuel Bowong, Gisèle Mophou,
Theoretical Assessment of the Impact of Water Stress on Plants Production: Case of Banana-Plantain,
2023,
71,
0001-5342,
10.1007/s10441-023-09473-7
|
|
1023.
|
Ann Nwankwo, Daniel Okuonghae,
Numerical assessment of the impact of hemozoin on the dynamics of a within-host malaria model,
2024,
126,
0307904X,
526,
10.1016/j.apm.2023.11.010
|
|
1024.
|
Sonu Chugh, Joydip Dhar, Rangan K. Guha,
Stability and optimal control of two products innovation diffusion system,
2023,
26667207,
100344,
10.1016/j.rico.2023.100344
|
|
1025.
|
Queen Tollett, Salman Safdar, Abba B. Gumel,
Dynamics of a two-group model for assessing the impacts of pre-exposure prophylaxis, testing and risk behaviour change on the spread and control of HIV/AIDS in an MSM population,
2023,
24680427,
10.1016/j.idm.2023.11.004
|
|
1026.
|
Zviiteyi Chazuka, Edinah Mudimu, Dephney Mathebula,
Stability and bifurcation analysis of an HIV model with pre-exposure prophylaxis and treatment interventions,
2024,
23,
24682276,
e01979,
10.1016/j.sciaf.2023.e01979
|
|
1027.
|
Shewafera Wondimagegnhu Teklu, Graciela Russomando,
Investigating the Effects of Intervention Strategies on Pneumonia and HIV/AIDS Coinfection Model,
2023,
2023,
2314-6141,
1,
10.1155/2023/5778209
|
|
1028.
|
Tharusha Bandara, Maia Martcheva, Calistus N. Ngonghala,
Mathematical model on HIV and nutrition,
2023,
17,
1751-3758,
10.1080/17513758.2023.2287087
|
|
1029.
|
A. Santanu Biswas, B. Humaira Aslam, Pankaj Kumar Tiwari,
Mathematical modeling of a novel fractional-order monkeypox model using the Atangana–Baleanu derivative,
2023,
35,
1070-6631,
10.1063/5.0174767
|
|
1030.
|
Abhishek Kumar, Kanica Goel, ,
Mathematical modeling of terrorism dynamics: Qualitative analysis and theoretical perspective,
2023,
0170-4214,
10.1002/mma.9769
|
|
1031.
|
Isaac Mwangi Wangari, Samson Olaniyi, Ramoshweu S. Lebelo, Kazeem O. Okosun,
Transmission of COVID-19 in the presence of single-dose and double-dose vaccines with hesitancy: mathematical modeling and optimal control analysis,
2023,
9,
2297-4687,
10.3389/fams.2023.1292443
|
|
1032.
|
R. Opoku-Sarkodie, F.A. Bartha, M. Polner, G. Röst,
Bifurcation analysis of waning-boosting epidemiological models with repeat infections and varying immunity periods,
2023,
03784754,
10.1016/j.matcom.2023.12.006
|
|
1033.
|
Rujira Chaysiri, Wirawan Chinviriyasit, Garrick E. Louis,
Optimal control strategies for water, sanitation, and hygiene in mitigating spread of waterborne diseases,
2024,
133,
09591524,
103132,
10.1016/j.jprocont.2023.103132
|
|
1034.
|
Qigui Yang, Jiabing Huang,
A STOCHASTIC MULTI-SCALE COVID-19 MODEL WITH INTERVAL PARAMETERS,
2024,
14,
2156-907X,
515,
10.11948/20230298
|
|
1035.
|
Arjun Kumar, Uma S. Dubey, Balram Dubey,
The impact of social media advertisements and treatments on the dynamics of infectious diseases with optimal control strategies,
2023,
03784754,
10.1016/j.matcom.2023.12.015
|
|
1036.
|
Jemal Muhammed Ahmed, Getachew Teshome Tilahun, Shambel Tadesse Degefa,
Within-host mathematical model of malaria parasite with cell-mediated and antibody-mediated immune systems,
2023,
0228-6203,
1,
10.1080/02286203.2023.2288771
|
|
1037.
|
Ummu Habibah, Tiara Rizki Tania, Labib Umam Al-Faruq,
Backward bifurcation on HIV/AIDS
SEI
1
I
2
TAR
model with multiple interactions between sub-populations
,
2024,
31,
2576-5299,
18,
10.1080/25765299.2023.2286713
|
|
1038.
|
Anuj Kumar,
Study of the impact of information and limited medical resources on Zika prevalence: an optimal control approach,
2023,
138,
2190-5444,
10.1140/epjp/s13360-023-04665-z
|
|
1039.
|
Folashade B. Agusto, Ramsès Djidjou-Demasse, Ousmane Seydi,
Mathematical model of
Ehrlichia chaffeensis
transmission dynamics in dogs
,
2023,
17,
1751-3758,
10.1080/17513758.2023.2287082
|
|
1040.
|
Silajit Kar, Dilip K. Maiti, Atasi Patra Maiti,
Impacts of non-locality and memory kernel of fractional derivative, awareness and treatment strategies on HIV/AIDS prevalence,
2024,
178,
09600779,
114389,
10.1016/j.chaos.2023.114389
|
|
1041.
|
Reuben Iortyer Gweryina, Muhammadu Yahaya Kura, Timothy Terfa Ashezua,
Optimal control model for the infectiology of staphylococcus aureus with dual transmission pathways,
2024,
14,
26667207,
100364,
10.1016/j.rico.2023.100364
|
|
1042.
|
Zadoki Tabo, Chester Kalinda, Lutz Breuer, Christian Albrecht,
Exploring the interplay between climate change and schistosomiasis transmission dynamics,
2023,
24680427,
10.1016/j.idm.2023.12.003
|
|
1043.
|
Pride Duve, Samuel Charles, Justin Munyakazi, Renke Lühken, Peter Witbooi,
A mathematical model for malaria disease dynamics with vaccination and infected immigrants,
2023,
21,
1551-0018,
1082,
10.3934/mbe.2024045
|
|
1044.
|
Abdisa Shiferaw Melese,
Mathematical model and optimal control analysis of coffee berry borer with temperature and rainfall variability,
2024,
17,
1793-5245,
10.1142/S179352452350047X
|
|
1045.
|
Junmei Liu, Yonggang Ma,
Global stability of a HIV-1 CCR5 gene therapy with suicide gene,
2024,
12,
2164-2583,
10.1080/21642583.2023.2291407
|
|
1046.
|
Benjamin Idoko Omede, Bolarinwa Bolaji, Olumuyiwa James Peter, Abdullahi A. Ibrahim, Festus Abiodun Oguntolu,
Mathematical analysis on the vertical and horizontal transmission dynamics of HIV and Zika virus co-infection,
2023,
27731863,
100064,
10.1016/j.fraope.2023.100064
|
|
1047.
|
Akriti Srivastava, Prashant K. Srivastava,
A tuberculosis model incorporating the impact of information, saturated treatment and multiple reinfections,
2023,
138,
2190-5444,
10.1140/epjp/s13360-023-04754-z
|
|
1048.
|
Jyoti Maurya, Konstantin B. Blyuss, A.K. Misra,
Modeling the impact of hospital beds and vaccination on the dynamics of an infectious disease,
2024,
368,
00255564,
109133,
10.1016/j.mbs.2023.109133
|
|
1049.
|
Shewafera Wondimagegnhu Teklu, Birhanu Baye Terefe, Dejen Ketema Mamo, Yohannes Fissha Abebaw,
Optimal control strategies on HIV/AIDS and pneumonia co-infection with mathematical modelling approach,
2024,
18,
1751-3758,
10.1080/17513758.2023.2288873
|
|
1050.
|
Tahir Khan, Fathalla A. Rihan, Qasem M. Al-Mdallal,
An epidemiological model for analysing pandemic trends of novel coronavirus transmission with optimal control,
2024,
18,
1751-3758,
10.1080/17513758.2023.2299001
|
|
1051.
|
Anip Kumar Paul, Neerob Basak, Md Abdul Kuddus,
Mathematical analysis and simulation of COVID-19 model with booster dose vaccination strategy in Bangladesh,
2024,
25901230,
101741,
10.1016/j.rineng.2023.101741
|
|
1052.
|
Preeti Deolia, Anuraj Singh,
Analysing the probable insights of ADE in dengue vaccination embodying sequential Zika infection and waning immunity,
2024,
139,
2190-5444,
10.1140/epjp/s13360-023-04813-5
|
|
1053.
|
Indunil M. Hewage, Kevin E. M. Church, Elissa J. Schwartz,
Investigating the impact of vaccine hesitancy on an emerging infectious disease: a mathematical and numerical analysis,
2024,
18,
1751-3758,
10.1080/17513758.2023.2298988
|
|
1054.
|
Salman Safdar, Abba B. Gumel,
2023,
Chapter 10,
978-3-031-40804-5,
243,
10.1007/978-3-031-40805-2_10
|
|
1055.
|
Suvankar Majee, T. K. Kar, Soovoojeet Jana, Dhiraj Kumar Das, J. J. Nieto,
Complex Dynamics and Fractional-Order Optimal Control of an Epidemic Model with Saturated Treatment and Incidence,
2023,
33,
0218-1274,
10.1142/S0218127423501924
|
|
1056.
|
Protyusha Dutta, Guruprasad Samanta, Juan J. Nieto,
Periodic transmission and vaccination effects in epidemic dynamics: a study using the SIVIS model,
2024,
0924-090X,
10.1007/s11071-023-09157-4
|
|
1057.
|
Manal Alqhtani, Khaled M. Saad, Rahat Zarin, Amir Khan, Waleed M. Hamanah,
Qualitative behavior of a highly non-linear Cutaneous Leishmania epidemic model under convex incidence rate with real data,
2024,
21,
1551-0018,
2084,
10.3934/mbe.2024092
|
|
1058.
|
Kabiru Michael Adeyemo, Umar Muhammad Adam, Adejimi Adeniji, Kayode Oshinubi,
Mathematical Modeling of Two Interacting Populations’ Dynamics of Onchocerciasis Disease Spread with Nonlinear Incidence Functions,
2024,
12,
2227-7390,
222,
10.3390/math12020222
|
|
1059.
|
Xinjie Zhu, Hua Liu, Xiaofen Lin, Qibin Zhang, Yumei Wei,
Global stability and optimal vaccination control of SVIR models,
2024,
9,
2473-6988,
3453,
10.3934/math.2024170
|
|
1060.
|
Yau Umar Ahmad, James Andrawus, Abdurrahman Ado, Yahaya Adamu Maigoro, Abdullahi Yusuf, Saad Althobaiti, Umar Tasiu Mustapha,
Mathematical modeling and analysis of human-to-human monkeypox virus transmission with post-exposure vaccination,
2024,
2363-6203,
10.1007/s40808-023-01920-1
|
|
1061.
|
Muath Awadalla, Jihan Alahmadi, Kumama Regassa Cheneke, Sania Qureshi,
Fractional Optimal Control Model and Bifurcation Analysis of Human Syncytial Respiratory Virus Transmission Dynamics,
2024,
8,
2504-3110,
44,
10.3390/fractalfract8010044
|
|
1062.
|
Surya Prakash, Prashant K. Srivastava, Anuj Kumar Umrao,
Bifurcation analysis of HIV infection model with cell-to-cell transmission and non-cytolytic cure,
2023,
11,
2544-7297,
10.1515/cmb-2023-0111
|
|
1063.
|
Shewafera Wondimagegnhu Teklu, Abebe Addise Meshesha, Saif Ullah,
Analysis of optimal control strategies on the fungal Tinea capitis infection fractional order model with cost-effective analysis,
2024,
14,
2045-2322,
10.1038/s41598-024-51670-y
|
|
1064.
|
HESSAH ALQAHTANI, QAISAR BADSHAH, GHAUS UR RAHMAN, DUMITRU BALEANU, SHAZIA SAKHI,
THRESHOLD DYNAMICS AND BIFURCATION ANALYSIS OF THE EPIDEMIC MODEL OF MERS-CoV,
2023,
31,
0218-348X,
10.1142/S0218348X23401679
|
|
1065.
|
Khadija Tul Kubra, Samra Gulshan, Rooh Ali,
An Atangana–Baleanu derivative-based fractal-fractional order model for the monkey pox virus: A case study of USA,
2024,
9,
26668181,
100623,
10.1016/j.padiff.2024.100623
|
|
1066.
|
Boubacar Diallo, Jeconia Abonyo Okelo, Shaibu Osman, Simon Karanja, Nnaemeka Stanley Aguegboh, Arvind Kumar Misra,
Fractional-Order Model for Evolution of Bovine Tuberculosis with Vaccination and Contaminated Environment,
2024,
2024,
1687-0042,
1,
10.1155/2024/6934895
|
|
1067.
|
Saduri Das, Prashant K. Srivastava, Pankaj Biswas,
Exploring Hopf-bifurcations and endemic bubbles in a tuberculosis model with behavioral changes and treatment saturation,
2024,
34,
1054-1500,
10.1063/5.0179351
|
|
1068.
|
Akriti Srivastava, Prashant K. Srivastava,
A tuberculosis model with the impact of sputum smear microscopy,
2024,
1598-5865,
10.1007/s12190-023-01984-3
|
|
1069.
|
Josiah Mushanyu,
Mathematical modelling of community acquired antibiotic resistant infections,
2024,
23529148,
101452,
10.1016/j.imu.2024.101452
|
|
1070.
|
Cuihua Wang, Sanling Yuan, Hao Wang,
The impact of water storage capacity on plant dynamics in arid environments: A stoichiometric modeling approach,
2024,
369,
00255564,
109147,
10.1016/j.mbs.2024.109147
|
|
1071.
|
Yustina A. Liana, Mary C. Swai, Alberto Fiorenza,
Mathematical Modeling of Coccidiosis Dynamics in Chickens with Some Control Strategies,
2024,
2024,
1687-0409,
1,
10.1155/2024/1072681
|
|
1072.
|
Anjali Jha, A. K. Misra,
A robust role of carbon taxes towards alleviating carbon dioxide: a modeling study,
2024,
144,
0022-0833,
10.1007/s10665-023-10327-x
|
|
1073.
|
Meryem Benazzouz, Tomás Caraballo, Mohamed El Fatini, Aziz Laaribi,
Discontinuous stochastic modeling and discrete numerical approximation for Tuberculosis model with relapse,
2024,
180,
09600779,
114531,
10.1016/j.chaos.2024.114531
|
|
1074.
|
Sattwika Acharya, Ranjit Kumar Upadhyay, Bapin Mondal,
Exploring the complex dynamics of a diffusive epidemic model: Stability and bifurcation analysis,
2024,
34,
1054-1500,
10.1063/5.0159015
|
|
1075.
|
Kumar Goswami Naba, Shanmukha B. ,
Stability and optimal control analysis of Zika virus with saturated incidence rate,
2020,
8,
23193786,
331,
10.26637/MJM0802/0004
|
|
1076.
|
Mussa A. Stephano, Jacob I. Irunde, Maranya M. Mayengo, Dmitry Kuznetsov,
The randomness and uncertainty in dynamics of lymphatic filariasis: CTMC stochastic approach,
2024,
139,
2190-5444,
10.1140/epjp/s13360-024-04945-2
|
|
1077.
|
O. Odiba Peace, O. Acheneje Godwin, Bolarinwa Bolaji,
A compartmental deterministic epidemiological model with non-linear differential equations for analyzing the co-infection dynamics between COVID-19, HIV, and Monkeypox diseases,
2024,
27724425,
100311,
10.1016/j.health.2024.100311
|
|
1078.
|
Guangming Qiu, Zhizhong Yang, Bo Deng,
Backward bifurcation of a plant virus dynamics model with nonlinear continuous and impulsive control,
2024,
21,
1551-0018,
4056,
10.3934/mbe.2024179
|
|
1079.
|
Shimli Dutta, Protyusha Dutta, Guruprasad Samanta,
Modelling disease transmission through asymptomatic carriers: a societal and environmental perspective,
2024,
2195-268X,
10.1007/s40435-024-01387-7
|
|
1080.
|
Jing Wang, Hongyong Zhao, Hao Wang,
The role of natural recovery category in malaria dynamics under saturated treatment,
2024,
88,
0303-6812,
10.1007/s00285-024-02051-6
|
|
1081.
|
Clotilde Djuikem, Frédéric Grognard, Suzanne Touzeau,
Impact of ontogenic changes on the dynamics of a fungal crop disease model motivated by coffee leaf rust,
2024,
88,
0303-6812,
10.1007/s00285-024-02053-4
|
|
1082.
|
Ambalarajan Venkatesh, Mallela Ankamma Rao, Murugadoss Prakash Raj, Karuppusamy Arun Kumar, D. K. K. Vamsi,
Mathematical modelling of COVID-19 dynamics using SVEAIQHR model,
2024,
12,
2544-7297,
10.1515/cmb-2023-0112
|
|
1083.
|
Md Hamidul Islam, M. A. Masud, Eunjung Kim,
Stochastic behavior of within-host progression in primary dengue infection,
2024,
1598-5865,
10.1007/s12190-024-02015-5
|
|
1084.
|
Abdullah Hasan Hassan, Dipo Aldila, Muhamad Hifzhudin Noor Aziz,
Optimal control and stability analysis of monkeypox transmission dynamics with the impact of contaminated surfaces,
2024,
10,
2297-4687,
10.3389/fams.2024.1372579
|
|
1085.
|
C. K. Mahadhika, Dipo Aldila,
A deterministic transmission model for analytics-driven optimization of COVID-19 post-pandemic vaccination and quarantine strategies,
2024,
21,
1551-0018,
4956,
10.3934/mbe.2024219
|
|
1086.
|
Madhuri Majumder, Samares Pal, Pankaj Kumar Tiwari,
Vaccination impact on impending HIV-COVID-19 dual epidemic with autogenous behavior modification: Hill-type functional response and premeditated optimization technique,
2024,
34,
1054-1500,
10.1063/5.0186156
|
|
1087.
|
Shewafera Wondimagegnhu Teklu, Dejen Ketema Mamo, Lishan Liu,
Analysis of fractional order model on the employees’ negative attitudes towards their workplace,
2024,
11,
2768-4830,
10.1080/27684830.2024.2322044
|
|
1088.
|
Tao Chen, Zhiming Li, Ge Zhang,
Analysis of a COVID-19 model with media coverage and limited resources,
2024,
21,
1551-0018,
5283,
10.3934/mbe.2024233
|
|
1089.
|
Kalyan Kumar Pal, Nazmul Sk, Rajanish Kumar Rai, Pankaj Kumar Tiwari,
Examining the impact of incentives and vaccination on COVID-19 control in India: addressing environmental contamination and seasonal dynamics,
2024,
139,
2190-5444,
10.1140/epjp/s13360-024-04997-4
|
|
1090.
|
Ghazi Ghader Mohammed, Zeedon Zaheer,
NeuroCyberGuard: Developing a Robust Cybersecurity Defense System through Deep Neural Learning-Based Mathematical Modeling,
2022,
2022,
2956-8323,
133,
10.2478/jsiot-2022-0009
|
|
1091.
|
Shewafera Wondimagegnhu Teklu,
Impacts of optimal control strategies on the HBV and COVID-19 co-epidemic spreading dynamics,
2024,
14,
2045-2322,
10.1038/s41598-024-55111-8
|
|
1092.
|
Shaoli Wang, Tengfei Wang, Xiyan Bai, Shaoping Ji, Tianhai Tian,
Bistability and Bifurcations of Tumor Dynamics with Immune Escape and the Chimeric Antigen Receptor T-Cell Therapy,
2024,
34,
0218-1274,
10.1142/S0218127424500159
|
|
1093.
|
Tapan Sarkar, Prashant K. Srivastava, Pankaj Biswas,
Application of the NSFD method in a Malaria model with nonlinear incidence and recovery rates,
2024,
139,
2190-5444,
10.1140/epjp/s13360-024-05045-x
|
|
1094.
|
Calvin Tadmon, Arnaud Feukouo Fossi, Berge Tsanou,
A two–strain avian–human influenza model with environmental transmission: Stability analysis and optimal control strategies,
2024,
10075704,
107981,
10.1016/j.cnsns.2024.107981
|
|
1095.
|
Iffatricia Haura Febiriana, Abdullah Hasan Hassan, Dipo Aldila, Qiankun Song,
Enhancing Malaria Control Strategy: Optimal Control and Cost-Effectiveness Analysis on the Impact of Vector Bias on the Efficacy of Mosquito Repellent and Hospitalization,
2024,
2024,
1687-0042,
1,
10.1155/2024/9943698
|
|
1096.
|
Poosan Moopanar Muthu, Anagandula Praveen Kumar,
Optimal control and bifurcation analysis of SEIHR model for COVID-19 with vaccination strategies and mask efficiency,
2024,
12,
2544-7297,
10.1515/cmb-2023-0113
|
|
1097.
|
A. K. Misra, Mamta Kumari,
Dynamic Relationship Between Informal Sector and Unemployment: A Mathematical Model,
2024,
34,
0218-1274,
10.1142/S0218127424500184
|
|
1098.
|
Arsène Jaurès Ouemba Tassé, Berge Tsanou, Cletus Kwa Kum, Jean Lubuma,
A mathematical model to study herbal and modern treatments against COVID-19,
2024,
0,
2752-2334,
10.1515/jncds-2023-0062
|
|
1099.
|
Anuj Kumar,
Assessing the impact of information-induced self-protection on Zika transmission: A mathematical modeling approach,
2024,
12,
2544-7297,
10.1515/cmb-2023-0123
|
|
1100.
|
Philip Onyema Ochi, Apeh Andrew Agada, Ifeoma B. Nworah, Damascus Arinze Nworah, Achi Nathan Goni,
LOCAL AND GLOBAL STABILITY ANALYSIS OF MEASLES EPIDEMIC MODEL AT DISEASE-FREE EQUILIBRIUM,
2024,
8,
2616-1370,
369,
10.33003/fjs-2024-0801-2219
|
|
1101.
|
Sandeep Sharma,
Global Stability of a Cholera Model with a Generalized Treatment Function,
2024,
0971-3514,
10.1007/s12591-024-00685-y
|
|
1102.
|
A. Venkatesh, M. Prakash Raj, B. Baranidharan,
Analyzing dynamics and stability of single delay differential equations for the dengue epidemic model,
2024,
15,
26667207,
100415,
10.1016/j.rico.2024.100415
|
|
1103.
|
Baba Seidu,
Mathematical analysis of the role of host-to-host transmission of Maize Streak Virus Disease with Atangana-Baleanu derivative,
2024,
31,
2576-5299,
213,
10.1080/25765299.2024.2327168
|
|
1104.
|
SIBO DING, PENGBO FU, LINSHUANG YUAN,
AN EPIDEMIC MODEL WITH SATURATED DIGITAL CONTACT TRACING FUNCTION: BIFURCATION AND ANALYSIS,
2024,
32,
0218-3390,
135,
10.1142/S0218339024500050
|
|
1105.
|
Sarita Bugalia, Jai Prakash Tripathi, Hao Wang,
Mutations make pandemics worse or better: modeling SARS-CoV-2 variants and imperfect vaccination,
2024,
88,
0303-6812,
10.1007/s00285-024-02068-x
|
|
1106.
|
Abhijit Jana, Sankar Kumar Roy, Md Haider Ali Biswas,
Transmission dynamics of dengue disease, awareness and control strategies,
2024,
0228-6203,
1,
10.1080/02286203.2024.2334979
|
|
1107.
|
Liying Wang, Qiaojuan Jia, Guanghu Zhu, Guanlin Ou, Tian Tang,
Transmission dynamics of Zika virus with multiple infection routes and a case study in Brazil,
2024,
14,
2045-2322,
10.1038/s41598-024-58025-7
|
|
1108.
|
Abayomi Ayotunde Ayoade, Oluwaseyi Aliu, Oyedepo Taiye,
The effect of treatment compliance on the dynamics and control of Lassa fever: an insight from mathematical modeling,
2024,
2254-3902,
10.1007/s40324-024-00353-9
|
|
1109.
|
Shidong Zhai, Haolin Li, Shuaibing Zhu, Jun Ma,
A multilayer network model of interaction between rumor propagation and media influence,
2024,
34,
1054-1500,
10.1063/5.0195918
|
|
1110.
|
Calistus N. Ngonghala, Hope Enright, Olivia Prosper, Ruijun Zhao,
Modeling the synergistic interplay between malaria dynamics and economic growth,
2024,
00255564,
109189,
10.1016/j.mbs.2024.109189
|
|
1111.
|
Shuqing Yang, Chunping Jia, Jia-Fang Zhang,
Complex dynamics of an SIRS epidemic model with non-monotone incidence and saturated cure rate,
2024,
0924-090X,
10.1007/s11071-024-09480-4
|
|
1112.
|
Ibad Ullah, Nigar Ali, Ihtisham Ul Haq, Imtiaz Ahmad, Mohammed Daher Albalwi, Md. Haider Ali Biswas, Kareem T. Elgindy,
Analysis of COVID-19 Disease Model: Backward Bifurcation and Impact of Pharmaceutical and Nonpharmaceutical Interventions,
2024,
2024,
1687-0425,
1,
10.1155/2024/6069996
|
|
1113.
|
Jacques Ndé Kengne, Calvin Tadmon,
Ebola virus disease model with a non linear incidence rate and density-dependent treatment,
2024,
24680427,
10.1016/j.idm.2024.03.007
|
|
1114.
|
Naomi M. Fuller, Christopher F. McQuaid, Martin J. Harker, Chathika K. Weerasuriya, Timothy D. McHugh, Gwenan M. Knight, Mark Robert Davies,
Mathematical models of drug-resistant tuberculosis lack bacterial heterogeneity: A systematic review,
2024,
20,
1553-7374,
e1011574,
10.1371/journal.ppat.1011574
|
|
1115.
|
Nursanti Anggriani, Emli Rahmi, Hasan S. Panigoro, Fatuh Inayaturohmat, Dhika Surya Pangestu, Sanubari Tansah Tresna,
Unraveling the influence of health protocol implementation for different clusters on COVID‐19 transmission in West Java, Indonesia,
2024,
0170-4214,
10.1002/mma.10103
|
|
1116.
|
Ling Xue, Yuqing Ren, Wei Sun, Ting Wang,
Modelling the dynamics of hand, foot, and mouth disease transmission through fomites and immigration,
2024,
0170-4214,
10.1002/mma.10075
|
|
1117.
|
Saima Rashid, Sher Zaman Hamidi, Saima Akram, Muhammad Aon Raza, S. K. Elagan, Beida Mohsen Tami Alsubei,
Theoretical and mathematical codynamics of nonlinear tuberculosis and COVID-19 model pertaining to fractional calculus and probabilistic approach,
2024,
14,
2045-2322,
10.1038/s41598-024-59261-7
|
|
1118.
|
Stephen Edward,
On the role of vaccination, health education, and hygiene compliance in the elimination and control of Hepatitis A Virus: An optimal control approach,
2024,
47,
23529148,
101501,
10.1016/j.imu.2024.101501
|
|
1119.
|
Jufren Zakayo Ndendya, Goodluck Mlay, Herieth Rwezaura,
Mathematical modelling of COVID-19 transmission with optimal control and cost-effectiveness analysis,
2024,
5,
26669900,
100155,
10.1016/j.cmpbup.2024.100155
|
|
1120.
|
Jemal Muhammed Ahmed, Getachew Tashome Tilahun, Shambel Tadesse Degefa,
In-host fractional order model for malaria parasite dynamics with immune system,
2024,
2363-6203,
10.1007/s40808-024-02004-4
|
|
1121.
|
Chidozie Williams Chukwu, Zviiteyi Chazuka, Salman Safdar, Iffatricia Haura Febriana, Dipo Aldila,
Assessing Syphilis transmission among MSM population incorporating low and high-risk infection: a modeling study,
2024,
43,
2238-3603,
10.1007/s40314-024-02669-8
|
|
1122.
|
Sunday Aloke, Patrick Okpara,
A Mathematical Model of Lassa Fever Transmission and Control in Ebonyi State, Nigeria ,
2024,
12,
2330-006X,
24,
10.11648/j.ajam.20241202.11
|
|
1123.
|
Abderrazak NABTi,
Dynamical analysis of an age-structured SEIR model with relapse,
2024,
75,
0044-2275,
10.1007/s00033-024-02227-6
|
|
1124.
|
Mohammad Izadi, Tayebeh Waezizadeh,
Stability analysis and numerical evaluations of a COVID-19 model with vaccination,
2024,
24,
1471-2288,
10.1186/s12874-024-02209-2
|
|
1125.
|
Shaoli Wang, Tengfei Wang, Fei Xu, Libin Rong,
Bistability of an HIV Model with Immune Impairment,
2024,
23,
1536-0040,
1108,
10.1137/23M1596004
|
|
1126.
|
Zhenhua Yu, Haiyan Zi, Yun Zhang, Shixing Wu, Xuya Cong, Almetwally M. Mostafa,
Dynamic modeling and simulation of double-rumor spreaders in online social networks with IS2TR model,
2024,
0924-090X,
10.1007/s11071-024-09538-3
|
|
1127.
|
Ignatius Ako, Owin Olowu,
Causes of Backward Bifurcation in a Tuberculosis-Schistosomiasis Co-infection Dynamics,
2024,
2581-8147,
655,
10.34198/ejms.14424.655695
|
|
1128.
|
Eka D.A.Ginting, Dipo Aldila, I.H. Febriana,
A deterministic compartment model for analyzing tuberculosis dynamics considering vaccination and reinfection,
2024,
27724425,
100341,
10.1016/j.health.2024.100341
|
|
1129.
|
Atena Ghasemabadi,
Mathematical modeling and control of Covid‐19,
2024,
0170-4214,
10.1002/mma.10134
|
|
1130.
|
Isaac K. Adu, Fredrick A. Wireko, Mojeeb Al-R. El-N. Osman, Joshua Kiddy K. Asamoah,
A fractional order Ebola transmission model for dogs and humans,
2024,
24,
24682276,
e02230,
10.1016/j.sciaf.2024.e02230
|
|
1131.
|
Mussa A. Stephano, Jacob I. Irunde, Maranya M. Mayengo, Dmitry Kuznetsov, Arvind Kumar Misra,
The Significance of Stochastic CTMC Over Deterministic Model in Understanding the Dynamics of Lymphatic Filariasis With Asymptomatic Carriers,
2024,
2024,
1687-0042,
1,
10.1155/2024/2130429
|
|
1132.
|
Adamu Ishaku, Nafiu Hussaini,
Mathematical analysis of transmission dynamics of Acute Bee Paralysis Virus within a hive,
2024,
7,
27731863,
100104,
10.1016/j.fraope.2024.100104
|
|
1133.
|
Khadija Tul Kubra, Samra Gulshan, Rooh Ali,
Exploring the influence of burial and cremation practices on Nipah virus transmission: a SIRD model analysis,
2024,
2363-6203,
10.1007/s40808-024-02024-0
|
|
1134.
|
Sacrifice Nana-Kyere, Baba Seidu, Kwara Nantomah,
Dynamical study of Malaria epidemic: Stability and cost-effectiveness analysis in the context of Ghana,
2024,
15,
26667207,
100430,
10.1016/j.rico.2024.100430
|
|
1135.
|
Ruili Huang, Suxia Zhang, Xiaxia Xu,
Effect of ratio threshold control on epidemic dynamics: analysis of an SIR model with non-monotonic incidence,
2024,
0924-090X,
10.1007/s11071-024-09699-1
|
|
1136.
|
Arpita Devi, Asish Adak, Praveen Kumar Gupta,
Stability switches via endemic bubbles in a COVID-19 model examining the effect of mask usage and saturated treatment with reinfection,
2024,
1598-5865,
10.1007/s12190-024-02073-9
|
|
1137.
|
Tangjuan Li, Yanni Xiao, Jane Heffernan,
Linking Spontaneous Behavioral Changes to Disease Transmission Dynamics: Behavior Change Includes Periodic Oscillation,
2024,
86,
0092-8240,
10.1007/s11538-024-01298-w
|
|
1138.
|
J. S. Musaili, I. Chepkwony, W. N. Mutuku, Qiankun Song,
Mathematical Modeling of the Transmission Dynamics of Gumboro Disease,
2024,
2024,
1687-0042,
1,
10.1155/2024/2514740
|
|
1139.
|
Mehmet Gümüş, Kemal Türk,
Dynamical behavior of a hepatitis B epidemic model and its NSFD scheme,
2024,
1598-5865,
10.1007/s12190-024-02103-6
|
|
1140.
|
JAI PRAKASH TRIPATHI, NITESH KUMAWAT, KOMAL TANWAR, DHANUMJAYA PALLA, MAIA MARTCHEVA,
TRANSMISSION DYNAMICS OF COVID-19 WITH DIABETES IN INDIA: A COST-EFFECTIVE AND OPTIMAL CONTROL ANALYSIS,
2024,
32,
0218-3390,
643,
10.1142/S0218339024500232
|
|
1141.
|
J. O. Akanni, S. Ajao, S. F. Abimbade, ,
Dynamical analysis of COVID-19 and tuberculosis co-infection using mathematical modelling approach,
2024,
4,
2767-8946,
208,
10.3934/mmc.2024018
|
|
1142.
|
Isaac Kwasi Adu, Fredrick Asenso Wireko, Sacrifice Nana-Kyere, Ebenezer Appiagyei, Mojeeb A. L.-Rahman E. L.-Nor Osman, Joshua Kiddy K. Asamoah,
Modelling the dynamics of Ebola disease transmission with optimal control analysis,
2024,
2363-6203,
10.1007/s40808-024-02020-4
|
|
1143.
|
Hanane Hmarrass, Redouane Qesmi,
Stability and backward bifurcation for an HIV model with macrophages and CD4+T cells with latent reservoirs,
2024,
03784754,
10.1016/j.matcom.2024.05.026
|
|
1144.
|
Santanu Biswas,
Assessing the role of active case detection on visceral leishmaniasis control: A case study,
2024,
17,
1793-5245,
10.1142/S1793524523500651
|
|
1145.
|
M. Aguiar, V. Steindorf, A. K. Srivastav, N. Stollenwerk, B. W. Kooi,
Bifurcation analysis of a two infection SIR-SIR epidemic model with temporary immunity and disease enhancement,
2024,
0924-090X,
10.1007/s11071-024-09710-9
|
|
1146.
|
Tesfaye Worku Gutema, Alemu Geleta Wedajo, Purnachandra Rao Koya,
Sensitivity and bifurcation analysis of corruption dynamics model with control measures,
2024,
2661-3352,
10.1142/S2661335224500096
|
|
1147.
|
Saduri Das, Prashant K. Srivastava, Pankaj Biswas,
Tuberculosis transmission with multiple saturated exogenous reinfections,
2024,
17,
1793-5245,
10.1142/S179352452350064X
|
|
1148.
|
Rubayyi T. Alqahtani, Abdelhamid Ajbar, Nadiyah Hussain Alharthi,
Dynamics of a Model of Coronavirus Disease with Fear Effect, Treatment Function, and Variable Recovery Rate,
2024,
12,
2227-7390,
1678,
10.3390/math12111678
|
|
1149.
|
Arpita Devi, Praveen Kumar Gupta,
Impact of media information and reinfection in a COVID-19 dynamical model: emergence of periodic orbits through Hopf bifurcation,
2024,
99,
0031-8949,
075207,
10.1088/1402-4896/ad4f2e
|
|
1150.
|
Sèna Yannick Ayihou, Têlé Jonas Doumatè, Cedric Hameni Nkwayep, Samuel Bowong Tsakou, Romain Glèlè Kakai,
Mathematical Modeling and Transmission Dynamics Analysis of the African Swine Fever Virus in Benin,
2024,
12,
2227-7390,
1749,
10.3390/math12111749
|
|
1151.
|
Ibrahim M.ELmojtaba, Kifah Al-Maqrashi, Fatma Al-Musalhi, Nasser Al-Salti,
Optimal control and cost effectiveness analysis of a Zika-Malaria co-infection model,
2024,
26668181,
100754,
10.1016/j.padiff.2024.100754
|
|
1152.
|
Akriti Srivastava, Tanuja Das, Prashant K. Srivastava,
Nonlinear dynamics of an SIRS model with ratio-dependent incidence and saturated treatment function,
2024,
1598-5865,
10.1007/s12190-024-02141-0
|
|
1153.
|
Kinza Mumtaz, Adnan Khan, Mudassar Imran, Madiha Mumtaz,
Control of HPV infection leading to cervical cancer,
2024,
26668181,
100763,
10.1016/j.padiff.2024.100763
|
|
1154.
|
Dipo Aldila, Basyar Lauzha Fardian, Chidozie Williams Chukwu, Muhamad Hifzhudin Noor Aziz, Putri Zahra Kamalia,
Improving tuberculosis control: assessing the value of medical masks and case detection—a multi-country study with cost-effectiveness analysis,
2024,
11,
2054-5703,
10.1098/rsos.231715
|
|
1155.
|
Bishal Chhetri, Krishna Kiran Vamsi Dasu,
Stability and bifurcation analysis of a nested multi-scale model for COVID-19 viral infection,
2024,
12,
2544-7297,
10.1515/cmb-2024-0006
|
|
1156.
|
Abayomi Ayotunde Ayoade, Oluwatayo Michael Ogunmiloro, Srinivasarao Thota,
Mathematical modeling and analysis of the influence of family background on the spread of crime,
2024,
0033-5177,
10.1007/s11135-024-01920-y
|
|
1157.
|
Protyusha Dutta, Sangeeta Saha, Guruprasad Samanta,
Assessing the influence of public behavior and governmental action on disease dynamics: a PRCC analysis and optimal control approach,
2024,
139,
2190-5444,
10.1140/epjp/s13360-024-05327-4
|
|
1158.
|
Andualem Tekle Haringo, Legesse Lemecha Obsu, Feyissa Kebede Bushu,
A mathematical model of malaria transmission with media-awareness and treatment interventions,
2024,
1598-5865,
10.1007/s12190-024-02154-9
|
|
1159.
|
Boniface Zacharia Naaly, Theresia Marijani, Augustino Isdory, Jufren Zakayo Ndendya,
Mathematical modelling of the effects of vector control, treatment and mass awareness on the transmission dynamics of dengue fever,
2024,
26669900,
100159,
10.1016/j.cmpbup.2024.100159
|
|
1160.
|
Ning Li, Yuequn Gao,
Modified fractional order social media addiction modeling and sliding mode control considering a professionally operating population,
2024,
32,
2688-1594,
4043,
10.3934/era.2024182
|
|
1161.
|
Y.A. Terefe, S.M. Kassa, M.D. Asfaw, C. Venter,
The use of an imperfect vaccination and awareness campaign in the control of antibiotic resistant gonorrhoea infection: A mathematical modelling perspective,
2024,
0307904X,
10.1016/j.apm.2024.06.042
|
|
1162.
|
A.K. Misra, Mamta Kumari, Mohammad Sajid,
Role of informal sector to combat unemployment in developing economy: A modeling study,
2024,
24058440,
e33378,
10.1016/j.heliyon.2024.e33378
|
|
1163.
|
Jyoti Maurya, Konstantin B. Blyuss, A. K. Misra,
Prospective impact of healthcare facilities and infrastructure on infectious disease outbreak dynamics: a modeling study,
2024,
1951-6355,
10.1140/epjs/s11734-024-01224-0
|
|
1164.
|
Hua Liu, Xiaofen Lin, Xinjie Zhu, Qibin Zhang, Yumei Wei, Gang Ma,
Modeling and analysis of a human papilloma virus transmission model with impact of media,
2024,
00255564,
109247,
10.1016/j.mbs.2024.109247
|
|
1165.
|
Hailay Weldegiorgis Berhe, Abadi Abay Gebremeskel, Habtu Alemayehu Atsbaha, Yohannes Yirga Kefela, Abadi Abraha Asgedom, Woldegebriel Assefa Woldegerima, Shaibu Osman, Lamin Kabareh,
Modelling and stability analysis of the dynamics of measles with application to Ethiopian data,
2024,
24058440,
e33594,
10.1016/j.heliyon.2024.e33594
|
|
1166.
|
Michael Byamukama, Damian Kajunguri, Martin Karuhanga,
Optimal control analysis of pneumonia and HIV/AIDS co-infection model,
2024,
03,
2811-0072,
10.1142/S2811007224500068
|
|
1167.
|
Joel N. Ndam, Patricia O. Azike,
Analysis of the transmission dynamics and effects of containment strategies on the eradication of malaria,
2024,
24682276,
e02306,
10.1016/j.sciaf.2024.e02306
|
|
1168.
|
Shimelis Bekele Zerefe, Tigabu Kasie Ayele, Surafel Luleseged Tilahun, Mehmet Ünver,
Mathematical Modeling of COVID‐19 Disease Dynamics With Contact Tracing: A Case Study in Ethiopia,
2024,
2024,
1110-757X,
10.1155/2024/5556734
|
|
1169.
|
Abdul Malek, Ashabul Hoque,
Mathematical Model of Tuberculosis with Seasonality, Detection, and Treatment,
2024,
23529148,
101536,
10.1016/j.imu.2024.101536
|
|
1170.
|
O.A. Adepoju, H.O. Ibrahim,
An optimal control model for monkeypox transmission dynamics with vaccination and immunity loss following recovery,
2024,
27724425,
100355,
10.1016/j.health.2024.100355
|
|
1171.
|
Qiru Song, Shaoli Wang, Fei Xu,
Robustness and bistability in a cytokine-enhanced viral infection model,
2024,
08939659,
109215,
10.1016/j.aml.2024.109215
|
|
1172.
|
Godwin Onuche Acheneje, David Omale, William Atokolo, Bolarinwa Bolaji,
Modelling the transmission dynamics of the co-infection of COVID-19 and Monkeypox diseases with optimal control strategies and cost benefit analysis,
2024,
27731863,
100130,
10.1016/j.fraope.2024.100130
|
|
1173.
|
Dagnaw Tantie Yihunie, Joseph Y. T. Mugisha, Dawit Melese Gebru, Haileyesus Tessema Alemneh, Alberto Fiorenza,
Modeling and Analysis of Fasciola Hepatica Disease Transmission,
2024,
2024,
1085-3375,
10.1155/2024/8843680
|
|
1174.
|
Sacrifice Nana-Kyere, Baba Seidu, Kwara Nantomah, Waleed Adel,
Mathematical Analysis of Malaria Epidemic: Asymptotic Stability With Cost‐Effectiveness Study,
2024,
2024,
1110-757X,
10.1155/2024/5533885
|
|
1175.
|
Martin Karuhanga, Victor Yiga, Yansheng Liu,
A Mathematical Model for the Dynamics of Onchocerciasis With Vector Control and Mass Drug Administration,
2024,
2024,
1110-757X,
10.1155/2024/6683371
|
|
1176.
|
Iffatricia Haura Febiriana, Dipo Aldila, Bevina Desjwiandra Handari, Puji Budi Setia Asih, Muhamad Hifzhudin Noor Aziz,
Exploring the Interplay Between Social Awareness and the Use of Bed Nets in a Malaria Control Program,
2024,
6,
25889338,
196,
10.1016/j.jobb.2024.06.005
|
|
1177.
|
Gebremedhin Gebregergs, Gebretsadik Berhe, Kibrom Gebrehiwot, Afework Mulugeta,
Predicting Tuberculosis Incidence and Its Trend in Tigray, Ethiopia: A Reality-Counterfactual Modeling Approach,
2024,
Volume 17,
1178-6973,
3241,
10.2147/IDR.S464787
|
|
1178.
|
Ragnimwendé Sawadogo, Fourtoua Victorien Konané, Chittaranjan Hens,
New Results on the Asymptotic Behaviour of a Stochastic SEI Model of Lymphatic Filariasis,
2024,
2024,
1076-2787,
10.1155/2024/3338326
|
|
1179.
|
Alemzewde Ayalew, Yezbalem Molla, Amsalu Woldegbreal, Mohammad Safi Ullah,
Modeling and Stability Analysis of the Dynamics of Malaria Disease Transmission with Some Control Strategies,
2024,
2024,
1085-3375,
10.1155/2024/8837744
|
|
1180.
|
Saima Rashid, Sher Zaman Hamidi, Muhammad Aon Raza, Rafia Shafique, Assayel Sultan Alsubaie, Sayed K. Elagan,
Robustness and exploration between the interplay of the nonlinear co-dynamics HIV/AIDS and pneumonia model via fractional differential operators and a probabilistic approach,
2024,
14,
2045-2322,
10.1038/s41598-024-65329-1
|
|
1181.
|
Shuanglin Jing, Ling Xue, Jichen Yang,
Backward bifurcation arising from decline of immunity against emerging infectious diseases,
2024,
08939659,
109241,
10.1016/j.aml.2024.109241
|
|
1182.
|
Evans Omondi, Nancy Matendechere Imbusi, Kube Ananda, Oluwatosin Babasola,
The epidemiological impact of media campaigns on the dynamics of HIV transmission model,
2024,
11,
2768-4830,
10.1080/27684830.2024.2381893
|
|
1183.
|
A. K. Misra, Mamta Kumari,
Modeling the Effect of Informal and Formal Jobs on the Dynamics of Unemployment,
2024,
34,
0218-1274,
10.1142/S0218127424501165
|
|
1184.
|
Jayanta Mondal, Piu Samui, Amar Nath Chatterjee, Bashir Ahmad,
Modeling hepatocyte apoptosis in chronic HCV infection with impulsive drug control,
2024,
0307904X,
10.1016/j.apm.2024.07.032
|
|
1185.
|
Zadoki Tabo, Livingstone Luboobi, Philipp Kraft, Lutz Breuer, Christian Albrecht,
Control of schistosomiasis by the selective competitive and predatory intervention of intermediate hosts: A mathematical modeling approach,
2024,
00255564,
109263,
10.1016/j.mbs.2024.109263
|
|
1186.
|
Fatimah O. Lawal, Tunde T. Yusuf, Afeez Abidemi, Olusegun Olotu,
A non-linear mathematical model for typhoid fever transmission dynamics with medically hygienic compartment,
2024,
2363-6203,
10.1007/s40808-024-02111-2
|
|
1187.
|
Anna Daniel Fome, Wolfgang Bock, Axel Klar,
Analysis of a competitive respiratory disease system with quarantine: Epidemic thresholds and cross-immunity effects,
2025,
485,
00963003,
128968,
10.1016/j.amc.2024.128968
|
|
1188.
|
Zhenhua Yu, Shixing Wu, Yun Zhang, Xuya Cong, Kaiqin Wu,
IRLTS rumor propagation model considering the influence of lurking psychology and the truth of rumors,
2024,
0924-090X,
10.1007/s11071-024-09741-2
|
|
1189.
|
Ramesh Gautam, Khagendra Adhikari, Anjana Pokharel, Kedar Nath Uprety, Naveen K. Vaidya,
Role of cross-border mobility on the backward bifurcation of malaria transmission model: Implications for malaria control in Nepal,
2025,
81,
14681218,
104173,
10.1016/j.nonrwa.2024.104173
|
|
1190.
|
Gizachew Kefelew Hailu, Shewafera Wondimagegnhu Teklu,
Investigation into hate speech dissemination dynamics in a community using fractional order modeling approach,
2024,
11,
2768-4830,
10.1080/27684830.2024.2386748
|
|
1191.
|
Adejimi Adeniji, Emmanuel Dansu, Michael Adeniyi, Seun Ale, Matthew Ekum, Michael Shatalov, Opeyemi Enoch,
Japa model: A mathematical framework for analyzing brain drain in Africa,
2024,
25,
24682276,
e02329,
10.1016/j.sciaf.2024.e02329
|
|
1192.
|
James Andrawus, Aliyu Iliyasu Muhammad, Ballah Akawu Denue, Habu Abdul, Abdullahi Yusuf, Soheil Salahshour,
Unraveling the importance of early awareness strategy on the dynamics of drug addiction using mathematical modeling approach,
2024,
34,
1054-1500,
10.1063/5.0203892
|
|
1193.
|
Tesfaneh Debele Batu, Legesse Lemecha Obsu,
Optimal control strategies for HIV and COVID-19 co-infection: a cost-effectiveness analysis,
2024,
10,
2297-4687,
10.3389/fams.2024.1439284
|
|
1194.
|
Arjun Kumar, Uma S. Dubey, Balram Dubey,
Modeling the effect of vaccinations, hospital beds, and treatments on the dynamics of infectious disease with delayed optimal control and sensitivity analysis,
2024,
139,
2190-5444,
10.1140/epjp/s13360-024-05508-1
|
|
1195.
|
Jiaojiao Wang, Qianqian Zhang, Sanyi Tang,
Global dynamic analyzes of the discrete SIS models with application to daily reported cases,
2024,
2024,
2731-4235,
10.1186/s13662-024-03829-0
|
|
1196.
|
P. Muthu, Bikash Modak,
Stability of In-Host Models of Dengue Virus Transmission with Linear and Nonlinear Infection Rate,
2024,
0971-3514,
10.1007/s12591-024-00700-2
|
|
1197.
|
Ashish Poonia, Siddhartha P. Chakrabarty,
Dynamics of a multi-strain HIV/AIDS epidemic model with treatment and its adherence,
2024,
139,
2190-5444,
10.1140/epjp/s13360-024-05566-5
|
|
1198.
|
Omar Forrest, Mo'tassem Al‐arydah,
Optimal control strategies for infectious diseases with consideration of behavioral dynamics,
2024,
0170-4214,
10.1002/mma.10388
|
|
1199.
|
R. Prem Kumar, G. S. Mahapatra, P. K. Santra, Juan J. Nieto,
Optimal control for dengue transmission based on a model with reinfection and treatment,
2024,
0889-8480,
1,
10.1080/08898480.2024.2394659
|
|
1200.
|
Mahmood Parsamanesh, Mohammad Izadi,
Global stability and bifurcations in a mathematical model for the waste plastic management in the ocean,
2024,
14,
2045-2322,
10.1038/s41598-024-71182-z
|
|
1201.
|
QIANXI DING, NING LI,
THE CHALLENGES OF MEDICAL RESOURCE LIMITATIONS FOR TUBERCULOSIS UNDER THE COVID-19 PANDEMIC: A MATHEMATICAL MODELING OF CO-INFECTION AND OPTIMAL CONTROL,
2024,
32,
0218-3390,
1003,
10.1142/S0218339024500335
|
|
1202.
|
Anupam Khatua, Siddhartha P. Chakrabarty,
Outbreak or extinction of TB: insights in presence of chemoprophylaxis using CTMC approach,
2024,
139,
2190-5444,
10.1140/epjp/s13360-024-05579-0
|
|
1203.
|
Jemal Muhammed Ahmed, Getachew Teshome Tilahun, Shambel Tedesse Degefa,
Mathematical model and analysis for within-host dynamics of the malaria parasite infection with optimal control strategies,
2024,
26667207,
100470,
10.1016/j.rico.2024.100470
|
|
1204.
|
Raymond Fosu Appiah, Zhen Jin, Junyuan Yang, Joshua Kiddy K. Asamoah,
Optimal control and cost-effectiveness analysis for a tuberculosis vaccination model with two latent classes,
2024,
2363-6203,
10.1007/s40808-024-02128-7
|
|
1205.
|
Silajit Kar, Dilip K. Maiti, Atasi Patra Maiti,
HIV/AIDS control owing to local and global awareness, diagnosis, treatment tactics and control theory: fractional order modeling,
2024,
0924-090X,
10.1007/s11071-024-10193-x
|
|
1206.
|
Zongmin Yue, Yingpan Zhang,
Dynamic analysis and optimal control of a mosquito-borne infectious disease model under the influence of biodiversity dilution effect,
2024,
2024,
2731-4235,
10.1186/s13662-024-03824-5
|
|
1207.
|
Sacrifice Nana-Kyere, Baba Seidu, Kwara Nantomah,
Optimal control and cost-effectiveness analysis of nonlinear deterministic Zika virus model,
2024,
2363-6203,
10.1007/s40808-024-02130-z
|
|
1208.
|
Zuhur Alqahtani, Areej Almuneef, Moustafa El-Shahed,
Mathematical Model for the Control of Red Palm Weevil,
2024,
13,
2075-1680,
637,
10.3390/axioms13090637
|
|
1209.
|
Chunya Liu, Hua Liu, Xinjie Zhu, Xiaofen Lin, Qibin Zhang, Yumei Wei,
Dynamic analysis of human papillomavirus transmission model under vaccine intervention: a case study of cervical cancer patients from Hungary,
2024,
2024,
2731-4235,
10.1186/s13662-024-03838-z
|
|
1210.
|
Yudi Ari Adi, ,
An Investigation of Susceptible-Exposed-Infectious-Recovered (SEIR) tuberculosis model dynamics with pseudo-recovery and psychological effect,
2024,
27724425,
100361,
10.1016/j.health.2024.100361
|
|
1211.
|
Steve Martin Anthony, Sumit Kaur Bhatia,
Mathematical modeling and dynamical analysis of an SPIR epidemic model with fuzzy parameters under environmental pollution,
2024,
2363-6203,
10.1007/s40808-024-02164-3
|
|
1212.
|
Yongqi Liu, Yuling Li, Chunhua Hu,
2024,
Modelling the transmission dynamics of tuberculosis with the floating population,
978-9-8875-8158-1,
1198,
10.23919/CCC63176.2024.10662260
|
|
1213.
|
Mona Zevika, Sri Utami, Budi Tjahjono, M. Pangky Sucahyono, Abdul Gafur, Ikhsan Guswenrivo, Anita Triska, S. Khoirul Himmi,
Understanding population dynamics and management strategies for a newly emerging pest Carea sp. in Eucalyptus plantations in Indonesia through a mathematical model,
2024,
188,
09600779,
115548,
10.1016/j.chaos.2024.115548
|
|
1214.
|
Cherie Gautam, Maitri Verma,
Mathematical modeling of emission and control of carbon dioxide from infrastructure expansion activities,
2024,
470,
01672789,
134387,
10.1016/j.physd.2024.134387
|
|
1215.
|
Dounia Bentaleb, Zakaria Khatar, Saida Amine,
Epidemiological modeling of monkeypox clades: a dual-strain SEIR approach with stability, bifurcation, and sensitivity analysis,
2024,
2363-6203,
10.1007/s40808-024-02162-5
|
|
1216.
|
Reuben Iortyer Gweryina, Cicik Alfiniyah, Chinwendu Emilian Madubueze, Kenneth Ojotogba Achema,
Nonlinear dynamics model of HIV/AIDS: Assessing the impacts of condoms, vaginal microbicides, and optimized treatment,
2024,
12,
26668181,
100933,
10.1016/j.padiff.2024.100933
|
|
1217.
|
Venkatesh Ambalarajan, Ankamma Rao Mallela, Vinoth Sivakumar, Prasantha Bharathi Dhandapani, Víctor Leiva, Carlos Martin-Barreiro, Cecilia Castro,
A six-compartment model for COVID-19 with transmission dynamics and public health strategies,
2024,
14,
2045-2322,
10.1038/s41598-024-72487-9
|
|
1218.
|
Yun Ouyang, Suxia Zhang, Jinhu Xu,
A deterministic SAIR model with vaccination and treatment: dynamical behaviors and control strategies,
2024,
1598-5865,
10.1007/s12190-024-02238-6
|
|
1219.
|
Wahidullah Zgham, Sarojkumar Sahani, Hezbullah Rahimi,
Modeling the Transmission Dynamics of the Ebola Virus: Effects of Quarantine and Vaccination,
2024,
2,
3006-7804,
97,
10.62810/jnsr.v2i3.88
|
|
1220.
|
Isaac Kwasi Adu, Fredrick Asenso Wireko, Samuel Akwasi Adarkwa, Gerald Ohene Agyekum,
Mathematical analysis of Ebola considering transmission at treatment centres and survivor relapse using fractal-fractional Caputo derivatives in Uganda,
2024,
4,
2791-8564,
296,
10.53391/mmnsa.1514196
|
|
1221.
|
Xinmiao Rong, Meng Fan,
Ecoepidemic modelling and dynamics of alveolar echinococcosis transmission,
2024,
00255564,
109304,
10.1016/j.mbs.2024.109304
|
|
1222.
|
Faraja Luhanda, Maranya M. Mayengo, Jacob I. Irunde, Faraimunashe Chirove,
The role of human immune status on the transmission dynamics of cryptosporidiosis in humans and cattle,
2024,
2363-6203,
10.1007/s40808-024-02146-5
|
|
1223.
|
James Andrawus, Yau Umar Ahmad, Agada Apeh Andrew, Abdullahi Yusuf, Sania Qureshi, Ballah Akawu Denue, Habu Abdul, Soheil Salahshour,
Impact of surveillance in human-to-human transmission of monkeypox virus,
2024,
1951-6355,
10.1140/epjs/s11734-024-01346-5
|
|
1224.
|
Jayanta Kumar Ghosh, Partha Biswas, Sudhanshu Kumar Biswas, Susmita Sarkar, Uttam Ghosh,
Qualitative and optimal control analysis of a two-serotype dengue model with saturated incidence in co-infection,
2024,
0228-6203,
1,
10.1080/02286203.2024.2414955
|
|
1225.
|
Khadija Tul Kubra, Rooh Ali, Bushra Ujala, Samra Gulshan, Tayyaba Rasool, Mohamed Reda Ali,
Exploring the dynamics of leprosy transmission with treatment through a fractal-fractional differential model,
2024,
26668181,
100909,
10.1016/j.padiff.2024.100909
|
|
1226.
|
Nantogmah Abdulai Sualey, Philip N. A. Akuka, Baba Seidu, Joshua Kiddy K. Asamoah, Yunfeng Wu,
A Mathematical Analysis of the Impact of Immature Mosquitoes on the Transmission Dynamics of Malaria,
2024,
2024,
2577-7408,
10.1155/2024/5589805
|
|
1227.
|
Cheng-Ze Li, Xing Lü, Jia-Jun Gong, Yu Lei,
Extended SEIR model of COVID-19 spread focusing on compartmental flow in England,
2024,
0924-090X,
10.1007/s11071-024-09748-9
|
|
1228.
|
N.H. Sweilam, S.M. Al-Mekhlafi, W.S. Abdel Kareem, G. Alqurishi,
A new crossover dynamics mathematical model of monkeypox disease based on fractional differential equations and the Ψ-Caputo derivative: Numerical treatments,
2025,
111,
11100168,
181,
10.1016/j.aej.2024.10.019
|
|
1229.
|
Arsène Jaurès Ouemba Tassé, Berge Tsanou, Cletus Kwa Kum, Jean Lubuma,
A mathematical model on the impact of awareness and traditional medicine in the control of Ebola: case study of the 2014–2016 outbreaks in Sierra Leone and Liberia,
2024,
0272-4960,
10.1093/imamat/hxae025
|
|
1230.
|
Marie Aimée Uwineza, Joseph Nzabanita, Innocent Ngaruye, Mouhamadou Bamba Sylla,
A deterministic Analysis of an Age-Gender structured model for malaria transmission dynamics,
2024,
27727076,
100478,
10.1016/j.ijregi.2024.100478
|
|
1231.
|
Benjamin Idoko Omede, Sayooj Aby Jose, J. Anuwat, Taesung Park,
Mathematical analysis on the transmission dynamics of delta and omicron variants of COVID-19 in the United States,
2024,
2363-6203,
10.1007/s40808-024-02101-4
|
|
1232.
|
Chunping Jia, Xia Wang, Yuming Chen,
Complex dynamics of an SIHR epidemic model with variable hospitalization rate depending on unoccupied hospital beds,
2024,
03784754,
10.1016/j.matcom.2024.10.023
|
|
1233.
|
Hui Cao, Jianquan Li, Pei Yu,
Study of immune response in a latent tuberculosis infection model,
2025,
140,
10075704,
108404,
10.1016/j.cnsns.2024.108404
|
|
1234.
|
Zhongkui Sun, Hanqi Zhang, Yuanyuan Liu,
Bifurcation Analysis and Optimal Control of an SEIR Model with Limited Medical Resources and Media Impact on Heterogeneous Networks,
2024,
34,
0218-1274,
10.1142/S0218127424501591
|
|
1235.
|
John Amoah-Mensah, Nicholas Kwasi-Do Ohene Opoku, Reindorf Nartey Borkor, Francis Ohene Boateng, Kwame Bonsu, Vida Afosaa, Rhoda Afutu,
Mathematical modelling of the transmission dynamics of Marburg virus disease with optimal control and cost-effectiveness analysis based on lessons from Ebola virus disease,
2024,
2024,
2731-4235,
10.1186/s13662-024-03833-4
|
|
1236.
|
Damtew Bewket Kitaro, Boka Kumsa Bole, Koya Purnachandra Rao, Cruz Vargas-De-León,
Optimal Control Strategies and Cost‐Effectiveness Analysis of Tuberculosis Dynamics With Multidrug‐Resistant Compartment,
2024,
2024,
1026-0226,
10.1155/2024/7235040
|
|
1237.
|
Shewafera Wondimagegnhu Teklu, Yohannes Fissha Abebaw, Ewa Pawluszewicz,
Analysis of the HBV and TB Coinfection Model With Optimal Control Strategies and Cost‐Effectiveness,
2024,
2024,
1026-0226,
10.1155/2024/8811930
|
|
1238.
|
Shewafera Wondimagegnhu Teklu, Abushet Hayalu Workie,
A dynamical optimal control theory and cost-effectiveness analyses of the HBV and HIV/AIDS co-infection model,
2024,
12,
2296-2565,
10.3389/fpubh.2024.1444911
|
|
1239.
|
Md Abdul Kuddus, M. Mohiuddin, Anip Kumar Paul, Azizur Rahman, Oluwole Daniel Makinde,
Insights from qualitative and bifurcation analysis of COVID-19 vaccination model in Bangladesh,
2024,
19,
1932-6203,
e0312780,
10.1371/journal.pone.0312780
|
|
1240.
|
Dejen Ketema Mamo, Mathew Ngugi Kinyanjui, Shewafera Wondimagegnhu Teklu, Gizachew Kefelew Hailu,
Mathematical modeling and analysis of the co-dynamics of crime and drug abuse,
2024,
14,
2045-2322,
10.1038/s41598-024-75034-8
|
|
1241.
|
Wenhui Hao, Juping Zhang, Zhen Jin,
Dynamic analysis and optimal control of HIV/AIDS model considering the first 95% target,
2024,
0170-4214,
10.1002/mma.10563
|
|
1242.
|
Adnan Aslam, Takasar Hussain, Muhammad Ozair, Arfah Hafeez, Wedad Albalawi, Mohammed Zakarya, Nadir Omer,
Mathematical analysis of Lassa fever epidemic with real data,
2025,
112,
11100168,
672,
10.1016/j.aej.2024.10.110
|
|
1243.
|
S. Nivetha, Parthasakha Das, Mini Ghosh,
A comparison of stochastic and deterministic dynamics of tuberculosis model,
2024,
0736-2994,
1,
10.1080/07362994.2024.2413632
|
|
1244.
|
Dipo Aldila, Joseph Páez Chávez, Chidozie W. Chukwu, Athaya Yumna Fathiyah, Juni Wijayanti Puspita, Kartika A. Dimar Setio, Ahmad Fuady, Putri Zahra Kamalia,
Unraveling dengue dynamics with data calibration from Palu and Jakarta: Optimizing active surveillance and fogging interventions,
2024,
189,
09600779,
115729,
10.1016/j.chaos.2024.115729
|
|
1245.
|
Shewafera Wondimagegnhu Teklu, Belela Samuel Kotola,
Mathematical model and backward bifurcation analysis of pneumonia infection with intervention measures,
2024,
11,
2768-4830,
10.1080/27684830.2024.2419462
|
|
1246.
|
Riya Das, Dhiraj Kumar Das, T K Kar,
Analysis of a chronological age-structured epidemic model with a pair of optimal treatment controls,
2024,
99,
0031-8949,
125240,
10.1088/1402-4896/ad8e0b
|
|
1247.
|
Rasha M. Yaseen, Nidal F. Ali, Ahmed A. Mohsen, Aziz Khan, Thabet Abdeljawad,
The modeling and mathematical analysis of the fractional-order of Cholera disease: Dynamical and Simulation,
2024,
12,
26668181,
100978,
10.1016/j.padiff.2024.100978
|
|
1248.
|
Protyusha Dutta, Guruprasad Samanta, Juan J. Nieto,
Nipah virus transmission dynamics: equilibrium states, sensitivity and uncertainty analysis,
2024,
0924-090X,
10.1007/s11071-024-10549-3
|
|
1249.
|
Mlyashimbi Helikumi, Salamida Daudi, Eva Lusekelo, Steady Mushayabasa,
Modeling and analyzing the impact of limited medical resources and mutation on tuberculosis dynamics,
2024,
27731863,
100186,
10.1016/j.fraope.2024.100186
|
|
1250.
|
Abdurkadir Edeo Gemeda, Legesse Lemecha Obsu, Eshetu Dadi Gurmu, Shambel Tadesse Degefa,
Mathematical modeling of tuberculosis transmission dynamics with vaccination and two lines of treatments: a caputo fractional approach,
2024,
1598-5865,
10.1007/s12190-024-02308-9
|
|
1251.
|
Saburi Rasheed, Olaniyi S. Iyiola, Segun I. Oke, Bruce A. Wade,
Exploring a Mathematical Model with Saturated Treatment for the Co-Dynamics of Tuberculosis and Diabetes,
2024,
12,
2227-7390,
3765,
10.3390/math12233765
|
|
1252.
|
Fathia Moh. Al Samma, N. Avinash, P. Chellamani, Nafisa A. Albasheir, Ameni Gargouri, G. Britto Antony Xavier, Mohammed M. A. Almazah,
Exploring Symmetry in an Epidemiological Model: Numerical Analysis of Backward Bifurcation and Sensitivity Indices,
2024,
16,
2073-8994,
1579,
10.3390/sym16121579
|
|
1253.
|
Franck J. Dongmo, Charles S. Wondji, Berge Tsanou, Ramsès Djidjou-Demasse,
Quantifying ivermectin's optimal strategy impacts on malaria transmission: a dual-structured mathematical model,
2024,
0003-6811,
1,
10.1080/00036811.2024.2429103
|
|
1254.
|
Saduri Das, Prashant K. Srivastava, Pankaj Biswas,
The role of social media in a tuberculosis compartmental model: Exploring Hopf-bifurcation and nonlinear oscillations,
2024,
03784754,
10.1016/j.matcom.2024.11.015
|
|
1255.
|
Josiah Mushanyu, Lunga Matsebula, Farai Nyabadza,
Mathematical modeling of cholera dynamics in the presence of antimicrobial utilization strategy,
2024,
14,
2045-2322,
10.1038/s41598-024-77834-4
|
|
1256.
|
Sunil Kanhaiyalal Kushavaha, Arvind Kumar Sinha,
Modeling the vertical and horizontal transmission of malaria with intermittent preventive treatment in pregnancy,
2024,
2254-3902,
10.1007/s40324-024-00370-8
|
|
1257.
|
Youquan Luo, Shuimei Tang, Fumin Zhang, Yujiang Liu, Shujing Gao,
Analysis of Huanglongbing transmission model with vector preferences and heterogeneous environments,
2024,
2024,
2731-4235,
10.1186/s13662-024-03854-z
|
|
1258.
|
Abhishek Kumar, Rajiv Aggarwal,
A novel nonlinear SAZIQHR epidemic transmission model: mathematical modeling, simulation, and optimal control,
2025,
100,
0031-8949,
015002,
10.1088/1402-4896/ad8700
|
|
1259.
|
Tigabu Kasie Ayele, Emile Franc Doungmo Goufo, Stella Mugisha, Joshua Kiddy K. Asamoah,
Co-infection mathematical model for HIV/AIDS and tuberculosis with optimal control in Ethiopia,
2024,
19,
1932-6203,
e0312539,
10.1371/journal.pone.0312539
|
|
1260.
|
Festus Abiodun Oguntolu, Olumuyiwa James Peter, Benjamin Idoko Omede, Ghaniyyat Bolanle Balogun, Tawakalt Abosede Ayoola,
Mathematical model on the transmission dynamics of leptospirosis in human and animal population with optimal control strategies using real statistical data,
2024,
0033-5177,
10.1007/s11135-024-02016-3
|
|
1261.
|
Yibekal Walle, Joseph Y.T. Mugisha, Dawit Melese, Haileyesus Tessema,
Modeling the Peste des Petits Ruminants (PPR) disease transmission dynamics with impacts of vaccination and restocking in small ruminant population in Amhara region, Ethiopia,
2024,
10,
24058440,
e41016,
10.1016/j.heliyon.2024.e41016
|
|
1262.
|
Herman Trazias, Maranya Mayengo, Jacob Irunde, Moatlhodi Kgosimore,
Dynamical modeling of Salmonellosis in humans and dairy cattle with temperature and pH effects,
2024,
00345288,
105514,
10.1016/j.rvsc.2024.105514
|
|
1263.
|
Habtamu Ayalew Engida, Demeke Fisseha,
Malaria and leptospirosis co-infection: A mathematical model analysis with optimal control and cost-effectiveness analysis,
2025,
24682276,
e02517,
10.1016/j.sciaf.2024.e02517
|
|
1264.
|
Kabiru Garba Ibrahim, James Andrawus, Abbas Abubakar, Abdullahi Yusuf, Stephen Ishaya Maiwa, Kefas Bitrus, Muhammad Sani, Ibrahim Abdullahi, Sunday Babuba, Joseph Jonathan,
Mathematical analysis of chickenpox population dynamics unveiling the impact of booster in enhancing recovery of infected individuals,
2025,
11,
2363-6203,
10.1007/s40808-024-02219-5
|
|
1265.
|
Shikha Singh, Shubham Chaudhry, Maninder Singh Arora, Rajeev Kumar Singh, Arvind Kumar Misra,
Modeling the effect of temperature rise due to atmospheric carbon dioxide on the outbreak of food-borne diseases,
2025,
1598-5865,
10.1007/s12190-024-02336-5
|
|
1266.
|
Surya Prakash, Anuj Kumar Umrao, Prashant K. Srivastava,
Bifurcation and stability analysis of within host HIV dynamics with multiple infections and intracellular delay,
2025,
35,
1054-1500,
10.1063/5.0232978
|
|
1267.
|
Tigabu Kasie Ayele, Emile Franc Doungmo Goufo, Stella Mugisha,
MATHEMATICAL MODELING OF TUBERCULOSIS WITH DRUG RESISTANCE IN THE PRESENCE OF OPTIMAL CONTROL: A CASE STUDY IN ETHIOPIA,
2024,
32,
0218-3390,
1541,
10.1142/S0218339024400084
|
|
1268.
|
Hamadoum Dicko, Ali Traoré,
Analysis of tuberculosis model with the impact of hospital resources,
2025,
1598-5865,
10.1007/s12190-024-02356-1
|
|
1269.
|
Chouaib Bounkaicha, Karam Allali,
Stability analysis of reaction–diffusion fractional-order SEIR model with vaccination and saturated incidence rate,
2025,
13,
26668181,
101069,
10.1016/j.padiff.2024.101069
|
|
1270.
|
Eva Lusekelo, Mlyashimbi Helikumi, Salamida Daudi, Steady Mushayabasa,
Optimal control applied to a stage-structured cassava mosaic disease model with vector feeding behavior,
2025,
18,
26667207,
100522,
10.1016/j.rico.2025.100522
|
|
1271.
|
Pooja Khoda, Vijay Pal Bajiya, Sada Nand Prasad,
Effective strategies toward controlling tuberculosis: optimal control and cost-effectiveness analysis,
2025,
140,
2190-5444,
10.1140/epjp/s13360-025-05978-x
|
|
1272.
|
Boubacar Diallo, Munkaila Dasumani, Jeconia Abonyo Okelo, Shaibu Osman, Oumar Sow, Nnaemeka Stanley Aguegboh, Walter Okongo,
Fractional optimal control problem modeling bovine tuberculosis and rabies co-infection,
2025,
26667207,
100523,
10.1016/j.rico.2025.100523
|
|
1273.
|
Chiganga. S. Ruoja, Maranya Mayengo, Nkuba Nyerere, Farai Nyabadza,
Modeling the influence of fear and patients’ attitudes on the transmission dynamics of tuberculosis,
2025,
11,
2363-6203,
10.1007/s40808-024-02257-z
|
|
1274.
|
Yicheng Hao, Yantao Luo, Zhidong Teng,
Role of limited medical resources in an epidemic model with media report and general birth rate,
2025,
10,
24680427,
522,
10.1016/j.idm.2025.01.001
|
|
1275.
|
VILLAVICENCIO-PULIDO GEISER, NELSON-LÓPEZ ÁNGELA, DOMÍNGUEZ-ALEMÁN ITZEL, HERNÁNDEZ-GÓMEZ JUAN CARLOS,
EFFECTS OF SYMBIOTIC BACTERIA IN PATHOGENIC INTERACTIONS: THE CASE OF BATRACHOCHYTRIUM DENDROBATIDIS AND PSEUDOMONAS SP. IN AMPHIBIAN POPULATIONS,
2024,
32,
0218-3390,
1289,
10.1142/S0218339024400060
|
|
1276.
|
Yanyuan Xing, Qian Li, Yunfeng Liu,
Stability and backward bifurcation in a malaria-transmission model with sterile mosquitoes,
2025,
2025,
2731-4235,
10.1186/s13662-025-03880-5
|
|
1277.
|
Mohsin Ali, Adnan Khan, Shaper Mirza, Mudassar Imran,
A model for the transmission dynamics of pneumococcal pneumonia and influenza co-infection,
2025,
18,
1793-5245,
10.1142/S1793524523500869
|
|
1278.
|
Malede Atnaw Belay, Jeconia Abonyo Okelo, David Mwangi Theuri, Haileyesus Tessema Alemneh, Negesse Yizengaw Alemu, Tudor Barbu,
A Coinfection Model of Bacterial Meningitis and Hepatitis B Diseases With Optimal Control and Cost‐Effectiveness Analysis,
2025,
2025,
1110-757X,
10.1155/jama/9015761
|
|
1279.
|
Piu Samui, Jayanta Mondal, Amar Nath Chatterjee, Fahad Al Basir,
Impact of awareness in self–monitoring of COVID-19: An optimal control approach,
2025,
18,
26667207,
100513,
10.1016/j.rico.2024.100513
|
|
1280.
|
Andrew Omame, Sarafa A. Iyaniwura, Qing Han, Adeniyi Ebenezer, Nicola L. Bragazzi, Xiaoying Wang, Woldegebriel A. Woldegerima, Jude D. Kong,
Dynamics of Mpox in an HIV endemic community: A mathematical modelling approach,
2025,
22,
1551-0018,
225,
10.3934/mbe.2025010
|
|
1281.
|
Yibekal Walle, Joseph Y.T. Mugisha, Dawit Melese, Haileyesus Tessema,
The impact of movement and vaccination on Peste des Petits Ruminants disease spread between two different agroecological zones,
2025,
27,
24682276,
e02532,
10.1016/j.sciaf.2025.e02532
|
|
1282.
|
Yerra Shankar Rao,
2025,
9780443288142,
105,
10.1016/B978-0-44-328814-2.00011-4
|
|
1283.
|
Jufren Zakayo Ndendya, Eunice Mureithi, Joshua A. Mwasunda, Gibson Kagaruki, Nyimvua Shaban, Mary Mayige,
Modelling the effects of quarantine and protective interventions on the transmission dynamics of Marburg virus disease,
2025,
11,
2363-6203,
10.1007/s40808-024-02264-0
|
|
1284.
|
C. Kabiwa Kadje, A. Nana Yakam, S. Bowong, G. Mophou,
Impact of water stress on plants production: A study case of banana-plantain,
2025,
18,
1793-5245,
10.1142/S1793524523500845
|
|
1285.
|
Dejen Ketema Mamo, Mathew N. Kinyanjui, Nourridine Siewe, Le Kang,
Mathematical assessment of the role of temperature on desert locust population dynamics,
2025,
20,
1932-6203,
e0317040,
10.1371/journal.pone.0317040
|
|
1286.
|
Ravi Pathak, Tarun Kashyap, Rakesh Kumar,
Mathematical model for the transmission dynamics of HIV-scrub typhus co-infection,
2025,
11,
2363-6203,
10.1007/s40808-024-02198-7
|
|
1287.
|
Komal Chauhan, Shubham Jasrotia, Rakesh Kumar,
Mathematical model for the analysis of co-infection of tuberculosis and scrub typhus,
2025,
11,
2363-6203,
10.1007/s40808-024-02228-4
|
|
1288.
|
Kumneger Tadesse Mulugeta, Mohammed Yiha Dawed, Shewafera Wondimagegnhu Teklu, Joshua Kiddy K. Asamoah,
Impact of media coverage on the transmission dynamics of TB with vaccines and treatment,
2025,
20,
1932-6203,
e0314324,
10.1371/journal.pone.0314324
|
|
1289.
|
Imane Smouni, Mohamed Baroudi, Mohamed Alia, Abdelbar Elmansouri, Abderrahim Labzai, Mohamed Belam,
Spatiotemporal stability analysis of soil-borne disease dynamics in tomato plants,
2025,
11,
2363-6203,
10.1007/s40808-024-02187-w
|
|
1290.
|
Kalyan Kumar Pal, Rajanish Kumar Rai, Pankaj Kumar Tiwari,
Influences of Media-Induced Awareness and Sanitation Practices on Cholera Epidemic: A Study of Bifurcation and Optimal Control,
2025,
35,
0218-1274,
10.1142/S0218127425500026
|
|
1291.
|
Michael Byamukama, Martin Karuhanga, Damian Kajunguri, Nian-Sheng Tang,
Mathematical Analysis of the Role of Treatment and Vaccination in the Management of the HIV/AIDS and Pneumococcal Pneumonia Co‐Infection,
2025,
2025,
2314-4629,
10.1155/jom/5879698
|
|
1292.
|
Shimli Dutta, Protyusha Dutta, Guruprasad Samanta,
Modelling the impacts of hospitalization, social dynamics and time delay from an epidemiological approach,
2025,
140,
2190-5444,
10.1140/epjp/s13360-025-06033-5
|
|
1293.
|
Himanshu Jain, Arvind Kumar Sinha,
Modeling the efficacy of Wolbachia in malaria control with limited public health resources,
2025,
84,
14681218,
104325,
10.1016/j.nonrwa.2025.104325
|
|
1294.
|
Miao Zhou, Junyuan Yang, Jiaxu Li, Guiquan Sun,
The Role of Medical Supply Shortages on an Age‐Structured Epidemic Model,
2025,
154,
0022-2526,
10.1111/sapm.70019
|
|
1295.
|
A. K. Misra, Ashutosh Upadhayay, Mamta Kumari, Jyoti Maurya,
Graph-theoretic approach and bifurcation analysis of skill acquisition and its effect on unemployment,
2025,
35,
1054-1500,
10.1063/5.0244559
|
|
1296.
|
Savita Rathee, Yogeeta Narwal, Komal Bansal, Homan Emadifar,
Sensitivity analysis of fractional order SVEIR Lumpy Skin Disease model,
2025,
119,
11100168,
609,
10.1016/j.aej.2025.01.076
|
|
1297.
|
Thierry Jimy Tsafack, Cletus Kwa Kum, Arsène Jaurès Ouemba Tassé, Berge Tsanou,
Mathematical modelling of the dynamics of typhoid fever and two modes of treatment in a Health District in Cameroon,
2025,
22,
1551-0018,
477,
10.3934/mbe.2025018
|
|
1298.
|
Innocent Sosoma, Eunice Mureithi, Guttorm Alendal, Zachariah Makondo, Nyimvua Shaban Mbare,
A Data-Driven Dynamical System Model for Assessing Targeted Interventions Against Brucellosis in Tanzania,
2025,
01479571,
102324,
10.1016/j.cimid.2025.102324
|
|
1299.
|
Samuel M. Naandam, Paul Chataa, Gideon K. Gogovi,
Analysis of a Malaria Transmission Model with Vaccination Proportion and Vaccine-Induced Immunity,
2025,
30,
2297-8747,
15,
10.3390/mca30010015
|
|
1300.
|
Indunil M. Hewage, Dylan Hull-Nye, Elissa J. Schwartz,
How Does Vaccine-Induced Immunity Compare to Infection-Acquired Immunity in the Dynamics of COVID-19?,
2025,
14,
2076-0817,
179,
10.3390/pathogens14020179
|
|
1301.
|
Nur Rahmi, Ahmad Fajri, Anggitamaya Anggitamaya, Wahyuni Ekasasmita, Kusnaeni Kusnaeni, Hartina Husain, Muhammad Rifki Nisardi, H. Gunawan, O. Neswan,
Mathematical analysis of polio prevention through vaccination and sanitation: Incorporating incomplete vaccination and virus carrier vectors,
2025,
75,
2271-2097,
02006,
10.1051/itmconf/20257502006
|
|
1302.
|
Amit Singh Thakur, Govind Prasad Sahu,
Modeling the COVID-19 Dynamics with Omicron Variant, Non-pharmaceutical Interventions, and Environmental Contamination,
2025,
0971-3514,
10.1007/s12591-025-00716-2
|
|
1303.
|
Jing Cai, Jun Zhang, Kai Wang, Zhixiang Dai, Zhiliang Hu, Yueping Dong, Zhihang Peng,
Evaluating the long-term effects of combination antiretroviral therapy of HIV infection: a modeling study,
2025,
90,
0303-6812,
10.1007/s00285-025-02196-y
|
|
1304.
|
M. Pradeesh, Prakash Mani,
Bistability and bifurcations in HIV-1 infection model with non-monotone responses,
2025,
15,
2045-2322,
10.1038/s41598-025-91417-x
|
|
1305.
|
Muhammad Altaf Khan, Mahmoud H. DarAssi, Irfan Ahmad, Noha Mohammad Seyam, Ebraheem Alzahrani,
Modeling the Dynamics of Tuberculosis with Vaccination, Treatment, and Environmental Impact: Fractional Order Modeling,
2024,
141,
1526-1506,
1365,
10.32604/cmes.2024.053681
|
|
1306.
|
Chinwendu Emilian Madubueze, Saheed Ajao, John Olajide Akanni, Fatmawati Fatmawati, Zviiteyi Chazuka,
Impact of environmental contamination on Lassa fever transmission dynamics: a mathematical modelling approach,
2025,
140,
2190-5444,
10.1140/epjp/s13360-025-06123-4
|
|
1307.
|
Pritam Saha, Kalyan Kumar Pal, Uttam Ghosh, Pankaj Kumar Tiwari,
Dynamic analysis of deterministic and stochastic SEIR models incorporating the Ornstein–Uhlenbeck process,
2025,
35,
1054-1500,
10.1063/5.0243656
|
|
1308.
|
PRITAM SAHA, KALYAN KUMAR PAL, UTTAM GHOSH, PANKAJ KUMAR TIWARI,
EFFECTS OF VACCINATION AND SATURATED TREATMENT ON COVID-19 TRANSMISSION IN INDIA: DETERMINISTIC AND STOCHASTIC APPROACHES,
2025,
33,
0218-3390,
53,
10.1142/S021833902450044X
|
|
1309.
|
Arun Kumar Sikder, Md Hamidul Islam,
Fractional order modeling of dengue transmission dynamics in Bangladesh,
2025,
14,
26668181,
101150,
10.1016/j.padiff.2025.101150
|
|
1310.
|
Xiaofeng Luo, Runzi He, Lifeng Hou, Shupeng Gao, Zhen Jin, Gui-Quan Sun, Lili Chang, Ludovico Minati, Stefano Boccaletti,
Optimal mixed control of networked reaction-diffusion systems,
2025,
7,
2643-1564,
10.1103/PhysRevResearch.7.013262
|
|
1311.
|
Imekela D. Ezekiel, Samuel A. Iyase, Timothy A. Anake,
Stability and Hopf Bifurcation Analysis of an Infectious Disease Delay Model,
2025,
24,
2224-2880,
126,
10.37394/23206.2025.24.14
|
|
1312.
|
Mehmet Gümüş, Kemal Türk,
Global analysis of a monkeypox virus model considering government interventions,
2025,
100,
0031-8949,
045216,
10.1088/1402-4896/ada318
|
|
1313.
|
Hasan Moh, Faizal Rifky Fahreza,
Herd immunity in a coronavirus disease 2019 epidemic model with consideration of vaccination and quarantine interventions,
2025,
32,
3048-734X,
2759,
10.59400/adecp2759
|
|
1314.
|
Olumuyiwa James Peter, Dipo Aldila, Tawakalt Abosede Ayoola, Ghaniyyat Bolanle Balogun, Festus Abiodun Oguntolu,
Modeling tuberculosis dynamics with vaccination and treatment strategies,
2025,
28,
24682276,
e02647,
10.1016/j.sciaf.2025.e02647
|
|
1315.
|
Mukhtiar Khan, Nadeem Khan, Ibad Ullah, Kamal Shah, Thabet Abdeljawad, Bahaaeldin Abdalla,
A novel fractal fractional mathematical model for HIV/AIDS transmission stability and sensitivity with numerical analysis,
2025,
15,
2045-2322,
10.1038/s41598-025-93436-0
|
|
1316.
|
Dominic Otoo, Kennedy Mensah, Eugene Adjei, Baaba Abassawah Danquah, Hawa Adusei, Razak Gbemmie Chuaya,
Stability analysis and optimal control strategies of Q fever transmission dynamics in Ghana’s Tropical Grassland,
2025,
11,
2363-6203,
10.1007/s40808-025-02341-y
|
|
1317.
|
Xiaoyue Yuan, Xuebing Zhang, Wenjun Liu, Ali Moussaoui, Pierre Auger,
Global dynamics of a chemotaxis system with toxicity in invasive species,
2025,
03784754,
10.1016/j.matcom.2025.03.009
|
|
1318.
|
Adrita Ghosh, Parthasakha Das, Tanujit Chakraborty, Pritha Das, Dibakar Ghosh,
Developing cholera outbreak forecasting through qualitative dynamics: Insights into Malawi case study,
2025,
00225193,
112097,
10.1016/j.jtbi.2025.112097
|
|
1319.
|
N. Susyanto,
Investigating the ARSIRI Model: An Extended SIR Model with Reinfection for Modelling Addiction-Related Phenomena,
2025,
19,
1823-8343,
311,
10.47836/mjms.19.1.16
|
|
1320.
|
Arjun Kumar, Uma S. Dubey, Balram Dubey,
Bifurcation and chaotic dynamics in a spatiotemporal epidemic model with delayed optimal control, stochastic process, and sensitivity analysis,
2025,
35,
1054-1500,
10.1063/5.0251992
|
|
1321.
|
Hossein Gholami, Mortaza Gachpazan, Majid Erfanian,
Mathematical modeling and dynamic analysis of dengue fever: examining economic and psychological impacts and forecasting disease trends through 2030—a case study of Nepal,
2025,
15,
2045-2322,
10.1038/s41598-025-94527-8
|
|
1322.
|
Wenhui Hao, Juping Zhang, Zhihang Peng, Zhen Jin,
Evaluating the current status and strategies of achieving the 95-95-95 target for HIV/AIDS: A mathematical model,
2025,
0,
1531-3492,
0,
10.3934/dcdsb.2025053
|
|
1323.
|
Tapan Sarkar, Pankaj Biswas, Prashant K. Srivastava,
Modeling the effects of media information and saturated treatment on malaria disease with NSFD method,
2025,
18,
1793-5245,
10.1142/S1793524524500013
|
|
1324.
|
Umar Tasiu Mustapha, Aliyu Iliyasu Muhammad, Abdullahi Yusuf, Nesreen Althobaiti, Aliyu Isa Aliyu, James Andrawus,
Mathematical Dynamics of Meningococcal Meningitis: Examining Carrier Diagnosis and Prophylaxis Treatment,
2025,
11,
2349-5103,
10.1007/s40819-025-01890-1
|
|
1325.
|
Mario Fuest, Johannes Lankeit, Masaaki Mizukami,
Global solvability of a model for tuberculosis granuloma formation,
2025,
85,
14681218,
104369,
10.1016/j.nonrwa.2025.104369
|
|
1326.
|
Jyoti Maurya, Mamta Kumari, A.K. Misra,
Modeling the effect of fear-inducing awareness programs on smoking cessation,
2025,
87,
18777503,
102584,
10.1016/j.jocs.2025.102584
|
|
1327.
|
Si Li, Tingting Fu, Rong Yuan, Yongzheng Sun, Maoxing Liu,
Dimensional reduction of an SIS epidemic network model with saturated treatment and human mobility,
2025,
15,
2158-3226,
10.1063/5.0256210
|
|
1328.
|
T.O. Oluyo, S.O. Olanrewaju, V.O. Akinsola, M.O. Adeyemi, J.K. Oladejo, O.A. Odebiyi, O.A. Adepoju, A.J. Taiwo,
Mathematical Modelling and Analysis of Lassa fever Dynamics with Environmental Transmission and Reinfection,
2025,
11,
27731863,
100254,
10.1016/j.fraope.2025.100254
|
|
1329.
|
Tesfaneh Debele Batu, Legesse Lemecha Obsu,
Co-dynamics of COVID-19, HIV and TB with information-dependent vaccination behavior and waning immunity,
2025,
24682276,
e02680,
10.1016/j.sciaf.2025.e02680
|
|
1330.
|
PANKAJ SINGH RANA, NITIN SHARMA, SUNIL SINGH NEGI, HACI MEHMET BASKONUS,
On the Dynamics of HIV–Tuberculosis Coinfection Model with Temporal Recovery from Tuberculosis: An Analysis,
2025,
1557-8666,
10.1089/cmb.2024.0763
|
|
1331.
|
Joseph Páez Chávez, Aytül Gökçe, Thomas Götz, Burcu Gürbüz,
An SIRS-model considering waning efficacy and periodic re-vaccination,
2025,
196,
09600779,
116436,
10.1016/j.chaos.2025.116436
|
|
1332.
|
Caihong Song, Zigen Song,
Global dynamics and optimal control strategies for the brucellosis model with environmental saturation infection: An assessment of severely affected provinces in China,
2025,
03784754,
10.1016/j.matcom.2025.04.008
|
|
1333.
|
Samson Olaniyi, Olajumoke D. Falowo, Abiodun T. Oladipo, Gideon K. Gogovi, Adekunle O. Sangotola,
Stability analysis of Rift Valley fever transmission model with efficient and cost-effective interventions,
2025,
15,
2045-2322,
10.1038/s41598-025-98722-5
|
|
1334.
|
Wasim Abbas, Sieun Lee, Sangil Kim, Ruy M. Ribeiro,
Joint estimation of hand-foot-mouth disease model and prediction in korea using the ensemble kalman filter,
2025,
21,
1553-7358,
e1012996,
10.1371/journal.pcbi.1012996
|
|
1335.
|
Yan Zhao, Qi Deng, Zhipeng Qiu, Ting Guo, Shigui Ruan,
Modeling the Interaction of Cytotoxic T-Lymphocytes and Oncolytic Viruses in a Tumor Microenvironment,
2025,
85,
0036-1399,
983,
10.1137/23M1613608
|
|
1336.
|
Goutam Saha, Pabel Shahrear, Abrar Faiyaz, Amit Kumar Saha,
Mathematical Modeling of Lumpy Skin Disease: New Perspectives and Insights,
2025,
26668181,
101218,
10.1016/j.padiff.2025.101218
|
|
1337.
|
Hongmei Jin, Shenglong Chen, Zhiming Li,
Dynamic Analysis and Optimal Control of a Stochastic SVEIRS Model With Saturation Incidence,
2025,
0170-4214,
10.1002/mma.10975
|
|
1338.
|
Nawaj Sarif, Arjun Kumar, Uma S. Dubey, Balram Dubey, Sahabuddin Sarwardi,
Impact of hospital bed availability on infectious disease management: a stochastic and optimal control approach,
2025,
140,
2190-5444,
10.1140/epjp/s13360-025-06294-0
|
|
1339.
|
Komal Basaiti, Anil Kumar Vashishth, Tonghua Zhang,
Modeling the effects of cross immunity and control measures on competitive dynamics of SARS-CoV-2 variants in the USA, UK, and Brazil,
2025,
00255564,
109450,
10.1016/j.mbs.2025.109450
|
|
1340.
|
Gopal Chandra Sikdar, Pritam Saha, Uttam Ghosh,
Effect of cross-immunity on the transmission of a two serotypes co-infected dengue model under deterministic and stochastic environments,
2025,
0924-090X,
10.1007/s11071-025-11172-6
|
|
1341.
|
Canglang Chen, Zhongyi Xiang,
Analysis and optimal control strategies of epidemic models with nonlinear incidence rates,
2025,
2025,
2731-4235,
10.1186/s13662-025-03950-8
|
|
1342.
|
Ibrahim M. ELmojtaba,
An optimal control analysis of HIV-Visceral Leishmaniasis co-infection model,
2025,
26668181,
101216,
10.1016/j.padiff.2025.101216
|
|
1343.
|
Kedeng Cheng, Yuanhua Qiao,
Bifurcation and stability analysis and control strategy study of a class SEIWR infectious disease models considering viral loads in the environment,
2025,
198,
09600779,
116490,
10.1016/j.chaos.2025.116490
|
|
1344.
|
Jun Zhang, Yuhang Ma, Yasuhiro Takeuchi, Yueping Dong, Zhihang Peng,
Modeling the Media Impact on the Medication Behavior of Drug-Sensitive Patients in Two-Strain Tuberculosis Transmission and a Case Study,
2025,
24,
1536-0040,
1494,
10.1137/24M1671013
|
|
1345.
|
Arpita Devi, Praveen Kumar Gupta,
2025,
Chapter 2,
978-3-031-84322-8,
19,
10.1007/978-3-031-84323-5_2
|
|
1346.
|
Shaoli Wang, Tengfei Wang, Jianhong Wu, Tianhai Tian,
Tristability and Elite Control in an HIV Infection Model with Natural Killer Cells Effect and Immune Impairment,
2025,
85,
0036-1399,
1023,
10.1137/23M1582205
|
|
1347.
|
Shaoli Wang, Wenya Zhang, Yuming Chen, Libin Rong,
Bistability and bifurcation analysis in a viral infection model with fully coupled logistic cell growth,
2025,
0022247X,
129682,
10.1016/j.jmaa.2025.129682
|
|
1348.
|
Mohammad Idrees, Nigar Ali, Ihtisham Ul Haq, Imtiaz Ahmad, Mohammed Daher Albalwi, Md. Haider Ali Biswas, Pramita Mishra,
Nonlinear Epidemic Model With Media Coverage: Stability, Bifurcation, and Control in a Population With Pre‐Existing Immunity,
2025,
2025,
1076-2787,
10.1155/cplx/1572080
|
|
1349.
|
Shikha Saha, Amit Kumar Saha, Chandra Nath Podder,
Dynamics of COVID-malaria co-infection with optimal control and cost-effectiveness analysis,
2025,
14,
26668181,
101217,
10.1016/j.padiff.2025.101217
|
|
1350.
|
Jyoti Maurya, A. K. Misra,
Modeling the impact of harmful algal blooms on aquatic life and human health,
2025,
140,
2190-5444,
10.1140/epjp/s13360-025-06295-z
|
|
1351.
|
Chidozie Williams Chukwu, Stéphane Yanick Tchoumi, Ousmane Koutou, Faishal Farrel Herdicho, ,
Exploring the epidemiological impact of Pneumonia–Listeriosis co-infection in the human population: a modeling and optimal control study,
2025,
13,
2195-268X,
10.1007/s40435-025-01714-6
|
|
1352.
|
Wei Wang, Chunxiao She, Hao Wang,
Complex Algal Dynamics and Optimal Control with Algicidal Activity and Reabsorption of Algal Cell Contents,
2025,
87,
0092-8240,
10.1007/s11538-025-01453-x
|
|
1353.
|
Omowumi Fatimah Lawal, Anthony Kodzo Hunkpe, Afeez Abidemi, Pius Olanrewaju Ogunjobi,
Mathematical assessment of the optimal intervention strategy for Cercospora fungal disease in orange plants,
2025,
11,
27731863,
100272,
10.1016/j.fraope.2025.100272
|
|
1354.
|
I. I. Ako, R. U. Omoregie,
Mathematical Analysis of a Tuberculosis-Schistosomiasis Co-infection Model with Vaccination and Treatment,
2025,
2581-8147,
649,
10.34198/ejms.15425.649683
|
|
1355.
|
Festus Abiodun Oguntolu, Olumuyiwa James Peter, Dipo Aldila, Ghaniyyat Bolanle Balogun, Oyinlola Patricia Ogunmola, Benjamin Idoko Omede,
Mathematical Analysis of the Transmission Dynamics of Hepatitis B Virus,
2025,
55,
0103-9733,
10.1007/s13538-025-01772-3
|
|
1356.
|
Kuldeep Kumar Tripathi, Maitri Verma, Arvind Kumar Misra,
Modeling the effects of psychological fear, media-induced awareness, and sanitation efforts on the dynamics of bacterial diseases,
2025,
140,
2190-5444,
10.1140/epjp/s13360-025-06337-6
|
|