1 |
Gao_D_2018 |
Global stability analysis of an SVEIR epidemic model with general incidence rate |
Gao, Da-peng; Huang, Nan-jing; Kang, Shin Min; Zhang, Cong |
2018 |
2018-03-27 |
COMM-USE |
N |
PMC7149115 |
|
10.1186/s13661-018-0961-7 |
bss41lae |
0.963259 |
|
Elazzouzi_2019, Denphedtnong_2013, Sirijampa_2018, Raja_Sekhara_Rao_2015 |
2 |
Samanta_2020 |
Chaos in a nonautonomous eco-epidemiological model with delay |
Samanta, Sudip; Tiwari, Pankaj Kumar; Alzahrani, Abdullah K.; Alshomrani, Ali Saleh |
2020 |
2020-03-31 |
PMC |
N |
PMC7116913 |
|
10.1016/j.apm.2019.11.006 |
yxhigw8h |
0.947250 |
Bocharov_2018, Li_K_2011, Bifolchi_2013 |
Yi_N_2009, Sirijampa_2018, Chen_2018, Yuan_2018 |
3 |
Safi_2011 |
The effect of incidence functions on the dynamics of a quarantine/isolation model with time delay |
Safi, Mohammad A.; Gumel, Abba B. |
2011 |
2011-02-28 |
PMC |
N |
PMC7105019 |
|
10.1016/j.nonrwa.2010.06.009 |
yrw1wj8m |
0.945422 |
Li_C_2018, Welch_2011, Bifolchi_2013, Gong_2013, Lloyd_2009 |
Safi_2011, Gao_D_2018, Denphedtnong_2013, Samanta_2020 |
4 |
Xiao_2007 |
Global analysis of an epidemic model with nonmonotone incidence rate |
Xiao, Dongmei; Ruan, Shigui |
2007 |
2007-08-31 |
PMC |
N |
PMC7094627 |
17303186.0 |
10.1016/j.mbs.2006.09.025 |
s6zyumef |
0.931200 |
Li_C_2018, Wu_Q_2014, Gong_2013, Kenah_2007 |
Fan_K_2020, Safi_2011, Liu_D_2013, Yuan_2018 |
5 |
Jiao_2016 |
Impulsive vaccination and dispersal on dynamics of an SIR epidemic model with restricting infected individuals boarding transports |
Jiao, Jianjun; Cai, Shaohong; Li, Limei |
2016 |
2016-05-01 |
PMC |
N |
PMC7126619 |
|
10.1016/j.physa.2015.10.055 |
isxko583 |
0.920090 |
Wu_Q_2014, Li_C_2018 |
Lv_W_2019, Fan_K_2020, Denphedtnong_2013, Kretzschmar_2004 |
6 |
Lu_M_2019 |
Bifurcation analysis of an SIRS epidemic model with a generalized nonmonotone and saturated incidence rate |
Lu, Min; Huang, Jicai; Ruan, Shigui; Yu, Pei |
2019 |
2019-07-15 |
PMC |
N |
PMC7094459 |
|
10.1016/j.jde.2019.03.005 |
7vs4zk3c |
0.919096 |
Clancy_2015, Pekalp_2019, Gong_2013 |
Sirijampa_2018, Safi_2011, Yuan_2018, Gao_D_2018 |
7 |
Zhou_2007 |
Bifurcations of an epidemic model with non-monotonic incidence rate of saturated mass action |
Zhou, Yugui; Xiao, Dongmei; Li, Yilong |
2007 |
2007-06-30 |
PMC |
N |
PMC7127769 |
|
10.1016/j.chaos.2006.01.002 |
wqund7y7 |
0.891877 |
Li_C_2018, Bifolchi_2013, Li_K_2011, Kenah_2007 |
Yuan_2018, Sirijampa_2018, Fan_K_2020, Lu_M_2019 |
8 |
Jiang_2009 |
Periodic solutions and bifurcation in an S I S epidemic model with birth pulses |
Jiang, Guirong; Yang, Qigui |
2009 |
2009-08-31 |
PMC |
N |
PMC7127272 |
|
10.1016/j.mcm.2009.04.021 |
zdj0nxmb |
0.891368 |
Bifolchi_2013, Kenah_2007, Yi_N_2009, Simon_2010 |
Sirijampa_2018, Yuan_2018, Yi_N_2009, Samanta_2020 |
9 |
Zhang_2015 |
Global Dynamics of a Virus Dynamical Model with Cell-to-Cell Transmission and Cure Rate |
Zhang, Tongqian; Meng, Xinzhu; Zhang, Tonghua |
2015 |
2015-10-01 |
COMM-USE |
N |
PMC4609528 |
26504489.0 |
10.1155/2015/758362 |
mbj7vcwj |
0.889216 |
Bifolchi_2013, Höhle_2007, Lloyd_2009, Simon_2010 |
Lv_W_2019, Sirijampa_2018, Buonomo_2012, Fudolig_2020 |
10 |
Sirijampa_2018 |
Hopf bifurcation analysis of a delayed SEIR epidemic model with infectious force in latent and infected period |
Sirijampa, Aekabut; Chinviriyasit, Settapat; Chinviriyasit, Wirawan |
2018 |
2018-10-01 |
COMM-USE |
N |
PMC7099316 |
|
10.1186/s13662-018-1805-6 |
2pw54nmn |
0.886533 |
Bifolchi_2013, Bocharov_2018, Zhao_2013 |
Yuan_2018, Yi_N_2009, Fan_K_2020, Li_F_2018 |
11 |
Nakata_2011 |
On the global stability of a delayed epidemic model with transport-related infection |
Nakata, Yukihiko |
2011 |
2011-12-31 |
PMC |
N |
PMC7106529 |
|
10.1016/j.nonrwa.2011.05.004 |
epj1q8q2 |
0.869860 |
Li_C_2018, Bifolchi_2013, Welch_2011, Giardina_2017 |
Sirijampa_2018, Elazzouzi_2019, Denphedtnong_2013, Fan_K_2020 |
12 |
Yongzhen_2017 |
Pulse vaccination of an epidemic model with two parallel infectious stages and time delays |
Yongzhen, Pei; Shuping, Li; Shujing, Gao; Min, Zhong |
2017 |
2017-12-31 |
PMC |
N |
PMC7127426 |
|
10.1016/j.matcom.2017.04.005 |
1nz5pjlq |
0.865487 |
Welch_2011, Li_C_2018, Wu_Q_2014, Gong_2013 |
Raja_Sekhara_Rao_2015, Kretzschmar_2004, Lv_W_2019, Fan_K_2020 |
13 |
Sahoo_2014 |
Diseased prey predator model with general Holling type interactions |
Sahoo, Banshidhar; Poria, Swarup |
2014 |
2014-01-01 |
PMC |
N |
PMC7112356 |
|
10.1016/j.amc.2013.10.013 |
mjcfnd0t |
0.857999 |
Bifolchi_2013, Bocharov_2018, Simon_2010, Chowell_2017 |
Sahoo_2015, Samanta_2020, Sahoo_2013, Safi_2011 |
14 |
Yuan_2018 |
Complex dynamics in an SIS epidemic model induced by nonlinear incidence |
Ruixia Yuan; Zhidong Teng; Jinhui Li |
2018 |
2018-05-25 |
BioRxiv |
N |
|
|
10.1101/331678 |
396rgxno |
0.852564 |
Bifolchi_2013, Li_C_2018, Wang_2014, Kenah_2007 |
Sirijampa_2018, Fan_K_2020, Yi_N_2009, Lv_W_2019 |
15 |
Sayan_2017 |
Dynamics of HIV/AIDS in Turkey from 1985 to 2016 |
Sayan, Murat; Hınçal, Evren; Şanlıdağ, Tamer; Kaymakamzade, Bilgen; Sa’ad, Farouk Tijjani; Baba, Isa Abdullahi |
2017 |
2017-11-03 |
PMC |
N |
PMC7088870 |
|
10.1007/s11135-017-0648-7 |
zg3ifje0 |
0.842934 |
Li_C_2018, Welch_2011, Lloyd_2009, Wu_Q_2014 |
Saad_2018, Imran_2018, Safi_2011, Gao_D_2018 |
16 |
Saad_2018 |
Global Stability Analysis of HIV+ Model |
Saad, Farouk Tijjani; Sanlidag, Tamer; Hincal, Evren; Sayan, Murat; Baba, Isa Abdullahi; Kaymakamzade, Bilgen |
2018 |
2018-12-29 |
PMC |
N |
PMC7122938 |
|
10.1007/978-3-030-04164-9_109 |
rmtyrbg0 |
0.835779 |
|
Sayan_2017, Gao_D_2018, Imran_2018, Yaro_2019 |
17 |
Meng_2009 |
Dynamics of a novel nonlinear SIR model with double epidemic hypothesis and impulsive effects |
Meng, Xinzhu; Li, Zhenqing; Wang, Xiaoling |
2009 |
2009-07-11 |
PMC |
N |
PMC7089480 |
|
10.1007/s11071-009-9557-1 |
mxc5xpdn |
0.828664 |
Bocharov_2018, Bifolchi_2013, Li_K_2011, Chowell_2017, Simon_2010 |
Fan_K_2020, Sirijampa_2018, Yuan_2018, Yi_N_2009 |
18 |
Yi_N_2009 |
Analysis and control of an SEIR epidemic system with nonlinear transmission rate |
Yi, Na; Zhang, Qingling; Mao, Kun; Yang, Dongmei; Li, Qin |
2009 |
2009-11-30 |
PMC |
N |
|
|
10.1016/j.mcm.2009.07.014 |
89v7wzl0 |
0.824815 |
Bifolchi_2013, Simon_2010, Kenah_2007, Chowell_2017 |
Samanta_2020, Sirijampa_2018, Yuan_2018, Chen_2018 |
19 |
Jin_X_2020 |
Mathematical Analysis of the Ross–Macdonald Model with Quarantine |
Jin, Xiulei; Jin, Shuwan; Gao, Daozhou |
2020 |
2020-04-02 |
PMC |
N |
PMC7117789 |
32242279.0 |
10.1007/s11538-020-00723-0 |
hv7z11al |
0.807041 |
|
Imran_2018, Safi_2011 |
20 |
Chen_2018 |
The global dynamics for a stochastic SIS epidemic model with isolation |
Chen, Yiliang; Wen, Buyu; Teng, Zhidong |
2018 |
2018-02-15 |
PMC |
N |
PMC7127643 |
|
10.1016/j.physa.2017.11.085 |
774ywcj0 |
0.800405 |
Lloyd_2009, Bifolchi_2013, Welch_2011 |
Sirijampa_2018, Li_F_2018, Yi_N_2009, Gao_D_2018 |
21 |
Sahoo_2015 |
Effects of allochthonous inputs in the control of infectious disease of prey |
Sahoo, Banshidhar; Poria, Swarup |
2015 |
2015-06-30 |
PMC |
N |
PMC7144350 |
|
10.1016/j.chaos.2015.02.002 |
orycly06 |
0.788002 |
Li_C_2018, Bifolchi_2013, Bocharov_2018, Lloyd_2009 |
Sahoo_2013 |
22 |
Sahoo_2013 |
Disease control in a food chain model supplying alternative food |
Sahoo, Banshidhar; Poria, Swarup |
2013 |
2013-04-15 |
PMC |
N |
PMC7117010 |
|
10.1016/j.apm.2012.11.017 |
ud79az3s |
0.774199 |
Bocharov_2018, Bifolchi_2013, Leach_2010 |
Sahoo_2015, Samanta_2020, Bucini_2019, Raja_Sekhara_Rao_2015 |
23 |
Elazzouzi_2019 |
Global stability analysis for a generalized delayed SIR model with vaccination and treatment |
Elazzouzi, A.; Lamrani Alaoui, A.; Tilioua, M.; Tridane, A. |
2019 |
2019-12-21 |
COMM-USE |
N |
PMC7100696 |
|
10.1186/s13662-019-2447-z |
bs575r1u |
0.765314 |
|
Gao_D_2018, Sirijampa_2018, Lv_W_2019, Fan_K_2020 |
24 |
Wang_2013 |
Impact of media coverage on epidemic spreading in complex networks |
Wang, Yi; Cao, Jinde; Jin, Zhen; Zhang, Haifeng; Sun, Gui-Quan |
2013 |
2013-12-01 |
PMC |
N |
|
|
10.1016/j.physa.2013.07.067 |
t39zx02d |
0.763731 |
Bocharov_2018, Bifolchi_2013, Kenah_2007 |
Zhao_2018, Guo_W_2018, Wu_Q_2014, Wang_2014 |
25 |
Nakata_2014 |
Global analysis for spread of infectious diseases via transportation networks |
Nakata, Yukihiko; Röst, Gergely |
2014 |
2014-06-20 |
PMC |
N |
PMC7080142 |
24948128.0 |
10.1007/s00285-014-0801-z |
jtg2bsye |
0.753177 |
Bifolchi_2013, Li_C_2018, Welch_2011, Kenah_2007 |
Denphedtnong_2013, Feng_2019, Nadim_2018, Zhong_2009 |
26 |
Pekalp_2019 |
An asymptotic solution of the integral equation for the second moment function in geometric processes |
Pekalp, Mustafa Hilmi; Aydoğdu, Halil |
2019 |
2019-06-30 |
PMC |
N |
PMC7127342 |
|
10.1016/j.cam.2018.12.014 |
9nhauvss |
0.712629 |
Zhao_2013, Lan_G_2019 |
Jiang_2009, Lan_G_2019, Meng_2009, Zou_X_2014 |
27 |
Nadim_2018 |
Global dynamics of a general vector-borne disease model with two transmission routes |
Sk Shahid Nadim; Indrajit Ghosh; Joydev Chattopadhyay |
2018 |
2018-12-07 |
BioRxiv |
N |
|
|
10.1101/486720 |
0gwuvaj2 |
0.712061 |
Li_C_2018, Bifolchi_2013, Welch_2011, Wu_Q_2014, O'Dea_2010 |
Imran_2018, Safi_2011, Denphedtnong_2013, Gao_D_2018 |
28 |
Li_F_2018 |
Analysis and Numerical Simulations of a Stochastic SEIQR Epidemic System with Quarantine-Adjusted Incidence and Imperfect Vaccination |
Li, Fei; Meng, Xinzhu; Wang, Xinzeng |
2018 |
2018-02-20 |
COMM-USE |
N |
PMC5838506 |
29675054.0 |
10.1155/2018/7873902 |
vpatxjd4 |
0.709078 |
Bocharov_2018, Renna_2020, Bifolchi_2013, Chowell_2017, Simon_2010 |
Lv_W_2019, Sirijampa_2018, Fan_K_2020, Gao_D_2018 |
29 |
Raja_Sekhara_Rao_2015 |
A dynamic model for infectious diseases: The role of vaccination and treatment |
Raja Sekhara Rao, P.; Naresh Kumar, M. |
2015 |
2015-06-30 |
PMC |
N |
PMC7126230 |
|
10.1016/j.chaos.2015.02.004 |
m2ozpmj6 |
0.702958 |
Li_C_2018, Wu_Q_2014, O'Dea_2010 |
Safi_2011, Denphedtnong_2013, Feng_2011 |
30 |
Cheng_2017 |
Adaptive dispersal effect on the spread of a disease in a patchy environment |
Cheng, Chang-Yuan |
2017 |
2017-07-31 |
PMC |
N |
PMC7125817 |
|
10.1016/j.apm.2017.03.004 |
7jjmp51n |
0.698491 |
Li_C_2018, Welch_2011, Bifolchi_2013, Pacheco_2017 |
Safi_2011, Zhao_2018, Van_Segbroeck_2010, Denphedtnong_2013 |
31 |
Sahu_2015 |
Dynamics of an SEQIHRS epidemic model with media coverage, quarantine and isolation in a community with pre-existing immunity |
Sahu, Govind Prasad; Dhar, Joydip |
2015 |
2015-01-15 |
PMC |
N |
PMC7094530 |
|
10.1016/j.jmaa.2014.08.019 |
23xkaa19 |
0.697726 |
Li_C_2018, Wu_Q_2014, Bifolchi_2013, Welch_2011, Gong_2013 |
Denphedtnong_2013, Safi_2011, Gao_D_2018, Raja_Sekhara_Rao_2015 |
32 |
Robinson_2013 |
A model for the emergence of drug resistance in the presence of asymptomatic infections |
Robinson, Marguerite; Stilianakis, Nikolaos I. |
2013 |
2013-06-30 |
PMC |
N |
PMC7094625 |
23524247.0 |
10.1016/j.mbs.2013.03.003 |
arowg1ov |
0.694609 |
Li_C_2018, Clancy_2015, Welch_2011 |
Imran_2018, Safi_2011, Alexander_2009 |
33 |
Safi_2013 |
Dynamics of a model with quarantine-adjusted incidence and quarantine of susceptible individuals |
Safi, Mohammad A.; Gumel, Abba B. |
2013 |
2013-03-15 |
PMC |
N |
PMC7125820 |
|
10.1016/j.jmaa.2012.10.015 |
2g6jxi5k |
0.685117 |
Li_C_2018, Wu_Q_2014 |
Safi_2011, Dénes_2019, Kucharski_2015 |
34 |
Sun_C_2011 |
Effect of media-induced social distancing on disease transmission in a two patch setting |
Sun, Chengjun; Yang, Wei; Arino, Julien; Khan, Kamran |
2011 |
2011-04-30 |
PMC |
N |
PMC7094744 |
21296092.0 |
10.1016/j.mbs.2011.01.005 |
nysp2zw4 |
0.679607 |
Li_C_2018, Wu_Q_2014, Bifolchi_2013, O'Dea_2010 |
Wang_2014, Wang_2013, Wu_Q_2014, Shang_2013 |
35 |
Wang_2014 |
A Filippov system describing media effects on the spread of infectious diseases |
Wang, Aili; Xiao, Yanni |
2014 |
2014-01-31 |
PMC |
N |
|
|
10.1016/j.nahs.2013.06.005 |
biryyh8f |
0.673322 |
Li_C_2018, Bifolchi_2013, Welch_2011, Wu_Q_2014 |
Qin_W_2016, Sirijampa_2018, Denphedtnong_2013, Sahu_2015 |
36 |
Zhao_2018 |
The effect of media coverage on threshold dynamics for a stochastic SIS epidemic model |
Zhao, Yu; Zhang, Liping; Yuan, Sanling |
2018 |
2018-12-15 |
PMC |
N |
PMC7125822 |
|
10.1016/j.physa.2018.08.113 |
qgxsd1sr |
0.651362 |
Li_C_2018, Bifolchi_2013, Welch_2011, Gong_2013 |
Denphedtnong_2013, Raja_Sekhara_Rao_2015, Guo_W_2018, Wang_2014 |
37 |
Lan_G_2019 |
A stochastic SIRS epidemic model with non-monotone incidence rate under regime-switching |
Lan, Guijie; Lin, Ziyan; Wei, Chunjin; Zhang, Shuwen |
2019 |
2019-11-30 |
PMC |
N |
PMC7127215 |
|
10.1016/j.jfranklin.2019.09.009 |
yjodgy2v |
0.640694 |
Pekalp_2019, Bocharov_2018, Bifolchi_2013 |
Fan_K_2020, Sirijampa_2018, Li_F_2018, Chen_2018 |
38 |
Qin_W_2016 |
Effects of limited medical resource on a Filippov infectious disease model induced by selection pressure |
Qin, Wenjie; Tang, Sanyi; Xiang, Changcheng; Yang, Yali |
2016 |
2016-06-20 |
PMC |
N |
PMC7126627 |
|
10.1016/j.amc.2016.02.042 |
744juy8r |
0.632842 |
Bifolchi_2013, Li_K_2011, Welch_2011, Li_C_2018 |
Safi_2011, Shi_P_2020 |
39 |
Lv_W_2019 |
Dynamical analysis and control strategies of an SIVS epidemic model with imperfect vaccination on scale-free networks |
Lv, Wei; Ke, Qing; Li, Kezan |
2019 |
2019-11-23 |
PMC |
N |
PMC7089206 |
|
10.1007/s11071-019-05371-1 |
7y7ke10e |
0.632181 |
Bifolchi_2013, Wu_Q_2014, Li_K_2011, Kenah_2007, Li_C_2018 |
Li_F_2018, Fan_K_2020, Sirijampa_2018, Elazzouzi_2019 |
40 |
Imran_2013 |
A model of bi-mode transmission dynamics of hepatitis C with optimal control |
Imran, Mudassar; Rafique, Hassan; Khan, Adnan; Malik, Tufail |
2013 |
2013-12-30 |
PMC |
N |
PMC7091180 |
24374404.0 |
10.1007/s12064-013-0197-0 |
ltdajnyy |
0.630352 |
Welch_2011, Li_C_2018, Wu_Q_2014, Bifolchi_2013 |
Safi_2011, Imran_2018, Robinson_2013, Raja_Sekhara_Rao_2015 |
41 |
Fan_K_2020 |
A delayed vaccinated epidemic model with nonlinear incidence rate and Lévy jumps |
Fan, Kuangang; Zhang, Yan; Gao, Shujing; Chen, Shihua |
2020 |
2020-04-15 |
PMC |
N |
PMC7154516 |
|
10.1016/j.physa.2019.123379 |
ru2mv7wv |
0.617626 |
Bifolchi_2013, Li_C_2018, Wu_Q_2014, Chowell_2017, Li_K_2011 |
Lv_W_2019, Sirijampa_2018, Yuan_2018, Li_F_2018 |
42 |
Siriprapaiwan_2018 |
Generalized reproduction numbers, sensitivity analysis and critical immunity levels of an SEQIJR disease model with immunization and varying total population size |
Siriprapaiwan, Supatcha; Moore, Elvin J.; Koonprasert, Sanoe |
2018 |
2018-04-30 |
PMC |
N |
PMC7127447 |
|
10.1016/j.matcom.2017.10.006 |
6eonuc8x |
0.589719 |
Li_C_2018, Gong_2013, Wu_Q_2014, Welch_2011, Tao_Y_2020 |
Clancy_2015, Safi_2011, Sahu_2015, Denphedtnong_2013 |
43 |
Denphedtnong_2013 |
On the dynamics of SEIRS epidemic model with transport-related infection |
Denphedtnong, Adisak; Chinviriyasit, Settapat; Chinviriyasit, Wirawan |
2013 |
2013-10-31 |
PMC |
N |
PMC7094751 |
23876843.0 |
10.1016/j.mbs.2013.07.001 |
vqagpbiu |
0.582431 |
Li_C_2018, Wu_Q_2014 |
Safi_2011, Raja_Sekhara_Rao_2015, Sahu_2015, Shi_P_2020 |
44 |
Hassouna_2018 |
On the solution of fractional order SIS epidemic model |
Hassouna, M.; Ouhadan, A.; El Kinani, E.H. |
2018 |
2018-12-31 |
PMC |
N |
PMC7125670 |
|
10.1016/j.chaos.2018.10.023 |
0vi8m0co |
0.569179 |
Bocharov_2018, Chowell_2017, Zhao_2013 |
Fan_K_2020, Sirijampa_2018, Yuan_2018, Li_F_2018 |
45 |
Imran_2018 |
Mathematical analysis of the role of hospitalization/isolation in controlling the spread of Zika fever |
Imran, Mudassar; Usman, Muhammad; Malik, Tufail; Ansari, Ali R. |
2018 |
2018-08-15 |
PMC |
N |
PMC7127007 |
30003923.0 |
10.1016/j.virusres.2018.07.002 |
69nnyq8p |
0.564056 |
Li_C_2018, Welch_2011, Wu_Q_2014, O'Dea_2010 |
Akhmetzhanov_2019 |
46 |
Dénes_2019 |
Modeling the impact of quarantine during an outbreak of Ebola virus disease |
Dénes, Attila; Gumel, Abba B. |
2019 |
2019-02-05 |
NONCOMM |
N |
PMC6382747 |
30828672.0 |
10.1016/j.idm.2019.01.003 |
dr1ym2mb |
0.563228 |
Li_C_2018, Wu_Q_2014 |
Safi_2013, Safi_2011 |
47 |
Bichara_2019 |
Global analysis of multi-host and multi-vector epidemic models |
Bichara, Derdei Mahamat |
2019 |
2019-07-15 |
PMC |
N |
PMC7126432 |
|
10.1016/j.jmaa.2019.03.030 |
mseb6uc6 |
0.560753 |
Welch_2011, Li_C_2018, Clancy_2015, Gong_2013 |
Nadim_2018, Sherborne_2015, Robinson_2013 |
48 |
Victor_2020 |
Estimation of the probability of reinfection with COVID-19 coronavirus by the SEIRUS model |
Alexander Okhuese Victor |
2020 |
2020-04-06 |
BioRxiv |
Y |
|
|
10.1101/2020.04.02.20050930 |
mu413rvc |
0.559664 |
Li_C_2018, Wu_Q_2014, O'Dea_2010, Sadun_2020 |
|
49 |
Hsu_S_2007 |
The final size of a SARS epidemic model without quarantine |
Hsu, Sze-Bi; Roeger, Lih-Ing W. |
2007 |
2007-09-15 |
PMC |
N |
PMC7111549 |
|
10.1016/j.jmaa.2006.11.026 |
t0rhb7ee |
0.554247 |
Clancy_2015, Li_C_2018, Zheng_2020, Tao_Y_2020 |
Safi_2011, Safi_2013, Shi_P_2020 |
50 |
Guo_W_2018 |
Stochastic persistence and stationary distribution in an SIS epidemic model with media coverage |
Guo, Wenjuan; Cai, Yongli; Zhang, Qimin; Wang, Weiming |
2018 |
2018-02-15 |
PMC |
N |
PMC7125861 |
|
10.1016/j.physa.2017.11.137 |
04p0c4jt |
0.544173 |
Bifolchi_2013, Bocharov_2018, Kenah_2007, Renna_2020 |
Fan_K_2020, Zhao_2018, Chen_2018, Yuan_2018 |
51 |
Kassa_2020 |
Analysis of the mitigation strategies for COVID-19: from mathematical modelling perspective |
Semu Kassa; Hatson John Boscoh Njagarah; Yibeltal Adane Terefe |
2020 |
2020-04-18 |
BioRxiv |
Y |
|
|
10.1101/2020.04.15.20066308 |
celjbnt3 |
0.538882 |
Li_C_2018, Wu_Q_2014, Welch_2011, O'Dea_2010 |
|
52 |
Rho_Y_2008 |
Dynamical response of multi-patch, flux-based models to the input of infected people: Epidemic response to initiated events |
Rho, Young-Ah; Liebovitch, Larry S.; Schwartz, Ira B. |
2008 |
2008-07-21 |
PMC |
N |
PMC7126121 |
|
10.1016/j.physleta.2008.05.065 |
cqxgel5e |
0.514881 |
Li_C_2018, Welch_2011, Pacheco_2017 |
Safi_2011, Denphedtnong_2013, Chen_2019 |
53 |
Calsina_2016 |
Asymptotic profile in selection–mutation equations: Gauss versus Cauchy distributions |
Calsina, Àngel; Cuadrado, Sílvia; Desvillettes, Laurent; Raoul, Gaël |
2016 |
2016-12-15 |
PMC |
N |
PMC7094311 |
|
10.1016/j.jmaa.2016.07.028 |
pvep7jfq |
0.512107 |
Li_C_2018, Welch_2011, Gong_2013 |
Nurtay_2019, Lan_G_2019, Clancy_2015, Martens_2011 |
54 |
Yaro_2019 |
Analysis and Optimal Control of Fractional-Order Transmission of a Respiratory Epidemic Model |
Yaro, David; Apeanti, Wilson Osafo; Akuamoah, Saviour Worlanyo; Lu, Dianchen |
2019 |
2019-07-15 |
PMC |
N |
PMC7134539 |
|
10.1007/s40819-019-0699-7 |
n0aast22 |
0.506324 |
|
Gao_D_2018, Imran_2018, Safi_2011, Imran_2013 |
55 |
Chanchan_2016 |
Modeling and analysis of epidemic spreading on community network with node's birth and death |
Chanchan, Li; Guoping, Jiang |
2016 |
2016-10-31 |
PMC |
N |
|
|
10.1016/s1005-8885(16)60061-4 |
ab1msb2m |
0.502359 |
Li_C_2018, Welch_2011, Giardina_2017, Bifolchi_2013 |
Li_C_2018, Kan_J_2017, Shang_2013, Kenah_2007 |
56 |
Wang_2015 |
An Epidemic Patchy Model with Entry–Exit Screening |
Wang, Xinxin; Liu, Shengqiang; Wang, Lin; Zhang, Weiwei |
2015 |
2015-05-15 |
PMC |
N |
PMC7088875 |
25976693.0 |
10.1007/s11538-015-0084-6 |
fsbohzw0 |
0.495724 |
|
Kretzschmar_2004, Denphedtnong_2013, Kretzschmar_2020, Park_2016 |
57 |
Ahmed_2007 |
On fractional order differential equations model for nonlocal epidemics |
Ahmed, E.; Elgazzar, A.S. |
2007 |
2007-06-15 |
PMC |
N |
PMC7125871 |
|
10.1016/j.physa.2007.01.010 |
dmtb3icf |
0.485065 |
|
Hassouna_2018, Fan_K_2020, Sirijampa_2018, Yuan_2018 |
58 |
Pitchaimani_2018 |
Effects of randomness on viral infection model with application |
Pitchaimani, M.; Brasanna Devi, M. |
2018 |
2018-12-30 |
PMC |
N |
PMC7148646 |
|
10.1016/j.ifacsc.2018.09.001 |
zebapzje |
0.472103 |
Bocharov_2018, Grassly_2008, Zheng_2020 |
Raja_Sekhara_Rao_2015, Sherborne_2015 |
59 |
Qin_W_2014 |
The selection pressures induced non-smooth infectious disease model and bifurcation analysis |
Qin, Wenjie; Tang, Sanyi |
2014 |
2014-12-31 |
PMC |
N |
PMC7126316 |
|
10.1016/j.chaos.2014.09.014 |
panntacm |
0.470688 |
Bocharov_2018, Bifolchi_2013, Wu_Q_2014, Chowell_2017 |
Qin_W_2016, Yuan_2018, Sirijampa_2018, Fan_K_2020 |
60 |
Hsu_S_2007 |
On the Role of Asymptomatic Infection in Transmission Dynamics of Infectious Diseases |
Hsu, Sze-Bi; Hsieh, Ying-Hen |
2007 |
2007-08-15 |
PMC |
N |
PMC7089371 |
17701259.0 |
10.1007/s11538-007-9245-6 |
ramd5lit |
0.467102 |
Li_C_2018, Welch_2011, Bifolchi_2013, Wu_Q_2014 |
Raja_Sekhara_Rao_2015, Safi_2011, Kucharski_2015, Voinson_2018 |
61 |
Wang_2014 |
Effect of time delay on pattern dynamics in a spatial epidemic model |
Wang, Yi; Cao, Jinde; Sun, Gui-Quan; Li, Jing |
2014 |
2014-10-15 |
PMC |
N |
PMC7156238 |
|
10.1016/j.physa.2014.06.038 |
f3uednt5 |
0.458508 |
Bifolchi_2013, Li_K_2011, Li_C_2018, Bocharov_2018 |
Sirijampa_2018, Wang_2014, Yuan_2018, Guo_W_2018 |
62 |
Senapati_2019 |
Disease control through removal of population using Z-control approach |
Senapati, Abhishek; Panday, Pijush; Samanta, Sudip; Chattopadhyay, Joydev |
2019 |
2019-12-19 |
PMC |
N |
|
|
10.1016/j.physa.2019.123846 |
nsei3i8g |
0.457253 |
Li_C_2018, Wu_Q_2014, O'Dea_2010, Welch_2011 |
Raja_Sekhara_Rao_2015, Safi_2011, Denphedtnong_2013, Bolzoni_2017 |
63 |
Keogh-Brown_2014 |
Macroeconomic Effect of Infectious Disease Outbreaks |
Keogh-Brown, M.R. |
2014 |
2014-12-31 |
PMC |
N |
PMC7149727 |
|
10.1016/b978-0-12-375678-7.00608-8 |
wq0lfcnx |
0.454557 |
|
Bucini_2019 |
64 |
Buonomo_2012 |
Global stability for an HIV-1 infection model including an eclipse stage of infected cells |
Buonomo, Bruno; Vargas-De-León, Cruz |
2012 |
2012-01-15 |
PMC |
N |
|
|
10.1016/j.jmaa.2011.07.006 |
04l3474h |
0.454550 |
Bocharov_2018, Simon_2010 |
Fudolig_2020, Saad_2018, Zhang_2018, Gao_D_2018 |
65 |
Dansu_2019 |
A model for epidemic dynamics in a community with visitor subpopulation |
Dansu, Emmanuel J.; Seno, Hiromi |
2019 |
2019-10-07 |
PMC |
N |
PMC7094103 |
31228488.0 |
10.1016/j.jtbi.2019.06.020 |
by3wkbtl |
0.453032 |
|
Denphedtnong_2013, Sherborne_2015, Guo_W_2018, Fan_K_2020 |
66 |
Zhong_2015 |
Coupled effects of local movement and global interaction on contagion |
Zhong, Li-Xin; Xu, Wen-Juan; Chen, Rong-Da; Qiu, Tian; Shi, Yong-Dong; Zhong, Chen-Yang |
2015 |
2015-10-15 |
PMC |
N |
PMC7125621 |
|
10.1016/j.physa.2015.05.023 |
jnztspph |
0.452169 |
Li_C_2018, Bifolchi_2013, Welch_2011, Wu_Q_2014 |
Denphedtnong_2013, Kan_J_2017, Dommar_2014 |
67 |
Wang_2012 |
Influence of temporary migration on the transmission of infectious diseases in a migrants' home village |
Wang, Lin; Wang, Xiao |
2012 |
2012-05-07 |
PMC |
N |
PMC7094136 |
22266046.0 |
10.1016/j.jtbi.2012.01.004 |
1v6lcti6 |
0.439847 |
|
Denphedtnong_2013, Chin_2019 |
68 |
Bao_Z_2010 |
Stability of the spreading in small-world network with predictive controller |
Bao, Z.J.; Jiang, Q.Y.; Yan, W.J.; Cao, Y.J. |
2010 |
2010-03-29 |
PMC |
N |
PMC7126156 |
|
10.1016/j.physleta.2010.01.045 |
jhxov1gu |
0.438386 |
Bifolchi_2013, Welch_2011, Li_C_2018 |
Samanta_2020, Lv_W_2019, Elazzouzi_2019, Yi_N_2009 |
69 |
Liu_Q_2019 |
State feedback impulsive therapy to SIS model of animal infectious diseases |
Liu, Qiong; Zhang, Meng; Chen, Lansun |
2019 |
2019-02-15 |
PMC |
N |
PMC7126221 |
|
10.1016/j.physa.2018.09.161 |
clbut1ot |
0.437388 |
Grassly_2008, Brockmann_2014 |
Fan_K_2020, Raja_Sekhara_Rao_2015, Lv_W_2019, Qin_W_2016 |
70 |
Liu_D_2013 |
Stability analysis of a novel epidemics model with vaccination and nonlinear infectious rate |
Liu, Defang; Wang, Bochu; Guo, Songtao |
2013 |
2013-09-15 |
PMC |
N |
PMC7132752 |
|
10.1016/j.amc.2013.07.016 |
5proo6ob |
0.432226 |
Bocharov_2018, Bifolchi_2013, Chowell_2017, Li_K_2011 |
Fan_K_2020, Lv_W_2019, Sirijampa_2018, Shi_P_2020 |
71 |
Vyasarayani_2020 |
New approximations, and policy implications, from a delayed dynamic model of a fast pandemic |
Chandrika Prakash Vyasarayani; Anindya Chatterjee |
2020 |
2020-04-14 |
BioRxiv |
N |
|
|
10.1101/2020.04.09.20059436 |
ca92pbvi |
0.428860 |
Bifolchi_2013, Zhao_2013, Höhle_2007, Simon_2010 |
Safi_2011, Sirijampa_2018, Chen_2019, Li_F_2018 |
72 |
Li_J_2011 |
The Failure of R (0) |
Li, Jing; Blakeley, Daniel; Smith?, Robert J. |
2011 |
2011-08-16 |
COMM-USE |
N |
PMC3157160 |
21860658.0 |
10.1155/2011/527610 |
spiud6ok |
0.409475 |
Clancy_2015, Welch_2011, Li_C_2018 |
Heffernan_2005, Robinson_2013, Tennant_2018, Clancy_2015 |
73 |
Victor_2020 |
MATHEMATICAL PREDICTIONS FOR COVID-19 AS A GLOBAL PANDEMIC |
Alexander Okhuese Victor |
2020 |
2020-03-24 |
BioRxiv |
Y |
|
|
10.1101/2020.03.19.20038794 |
ckay4ufw |
0.409022 |
|
Victor_2020 |
74 |
Clancy_2015 |
Generality of endemic prevalence formulae |
Clancy, Damian |
2015 |
2015-11-30 |
PMC |
N |
PMC7094683 |
26321688.0 |
10.1016/j.mbs.2015.08.011 |
gmpsniqt |
0.406154 |
Pekalp_2019, Gong_2013, Welch_2011 |
Safi_2011, Tennant_2018, Feng_2018, Meehan_2020 |
75 |
Gao_D_2018 |
Optimal control analysis of a tuberculosis model |
Gao, Da-peng; Huang, Nan-jing |
2018 |
2018-06-30 |
PMC |
N |
|
|
10.1016/j.apm.2017.12.027 |
wh28s0ws |
0.388185 |
Bocharov_2018, Zheng_2020, Chowell_2017 |
Yan_X_2008, Bolzoni_2017, Iacoviello_2013, Mallela_2020 |
76 |
Lei_C_2013 |
The spreading frontiers of avian-human influenza described by the free boundary |
Lei, ChengXia; Kim, KwangIk; Lin, ZhiGui |
2013 |
2013-05-29 |
PMC |
N |
PMC7089280 |
|
10.1007/s11425-013-4652-7 |
uuw3s5d5 |
0.381721 |
|
|
77 |
Nurtay_2019 |
Theoretical conditions for the coexistence of viral strains with differences in phenotypic traits: a bifurcation analysis |
Nurtay, Anel; Hennessy, Matthew G.; Sardanyés, Josep; Alsedà, Lluís; Elena, Santiago F. |
2019 |
2019-01-09 |
COMM-USE |
N |
PMC6366233 |
30800366.0 |
10.1098/rsos.181179 |
xeq4yix4 |
0.380145 |
Welch_2011, Bifolchi_2013 |
|
78 |
Knipl_2016 |
The Impact of Movement on Disease Dynamics in a Multi-city Compartmental Model Including Residency Patch |
Knipl, Diána |
2016 |
2016-02-17 |
PMC |
N |
PMC7123714 |
|
10.1007/978-3-319-30379-6_24 |
wf6lz1ed |
0.373281 |
Li_C_2018, Pacheco_2017 |
Denphedtnong_2013, Citron_2020, Cheng_2017 |
79 |
Fudolig_2020 |
The local stability of a modified multi-strain SIR model for emerging viral strains |
Miguel Fudolig; Reka Howard |
2020 |
2020-03-23 |
BioRxiv |
Y |
|
|
10.1101/2020.03.19.20039198 |
cycc3fvl |
0.364622 |
Wu_Q_2014, Li_C_2018 |
Ng_T_2003, Meehan_2020 |
80 |
O'Dea_2018 |
Estimating the distance to an epidemic threshold |
O'Dea, Eamon B.; Park, Andrew W.; Drake, John M. |
2018 |
2018-06-27 |
None |
N |
PMC6030631 |
29950512.0 |
10.1098/rsif.2018.0034 |
xbxs9dg6 |
0.358867 |
Bifolchi_2013, O'Dea_2010, Li_C_2018, Welch_2011 |
Safi_2011, Cheng_2017, Kucharski_2015 |
81 |
Safi_2011 |
Qualitative study of a quarantine/isolation model with multiple disease stages |
Safi, Mohammad A.; Gumel, Abba B. |
2011 |
2011-11-01 |
PMC |
N |
PMC7112307 |
|
10.1016/j.amc.2011.07.007 |
ge871ypq |
0.353297 |
Li_C_2018, Welch_2011, Sadun_2020, Wu_Q_2014, O'Dea_2010 |
Safi_2013, Imran_2018, Kucharski_2015 |
82 |
Iacoviello_2013 |
Optimal control for SIRC epidemic outbreak |
Iacoviello, Daniela; Stasio, Nicolino |
2013 |
2013-06-30 |
PMC |
N |
PMC7126881 |
23399104.0 |
10.1016/j.cmpb.2013.01.006 |
o2t5f4s6 |
0.330930 |
Bocharov_2018, Wu_Q_2014, Li_C_2018 |
Bolzoni_2017, Raja_Sekhara_Rao_2015, Li_F_2018, Lv_W_2019 |
83 |
Labadin_2020 |
Transmission Dynamics of 2019-nCoV in Malaysia |
Jane Labadin; Boon Hao Hong |
2020 |
2020-02-11 |
BioRxiv |
Y |
|
|
10.1101/2020.02.07.20021188 |
7axgotby |
0.330431 |
Bifolchi_2013, Simon_2010, Bocharov_2018, Renna_2020 |
Shi_P_2020, Yong_2016, Biswas_2020 |
84 |
Arthur_2020 |
Complex dynamics induced by delayed adaptive behavior during epidemics |
Ronan F. Arthur; James H. Jones; Matthew H. Bonds; Marcus W. Feldman |
2020 |
2020-04-16 |
BioRxiv |
N |
|
|
10.1101/2020.04.14.028407 |
f4ro5jst |
0.311745 |
Li_C_2018, Bifolchi_2013, Wu_Q_2014, O'Dea_2010, Li_K_2011 |
|
85 |
Gersovitz_2014 |
Infectious Disease Externalities |
Gersovitz, M. |
2014 |
2014-12-31 |
PMC |
N |
PMC7149787 |
|
10.1016/b978-0-12-375678-7.00404-1 |
qb7faqa7 |
0.305385 |
|
|
86 |
Wang_2009 |
Optimal Time Delay in the Control of Epidemic |
Wang, Zhenggang; Szeto, Kwok Yip; Leung, Frederick Chi-Ching |
2009 |
2009-01-01 |
PMC |
N |
PMC7122778 |
|
10.1007/978-3-642-03211-0_21 |
4outpiwu |
0.300628 |
Bocharov_2018, Chowell_2017, Bifolchi_2013 |
Bolzoni_2017, Raja_Sekhara_Rao_2015, Chen_2018, Safi_2011 |