Effect of incubation delay and pollution on the transmission dynamics of infectious disease
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[1] N. Linton,et al. Incubation Period and Other Epidemiological Characteristics of 2019 Novel Coronavirus Infections with Right Truncation: A Statistical Analysis of Publicly Available Case Data , 2020, medRxiv.
[2] Nitu Kumari,et al. Modeling the Dynamics of Infectious Disease Under the Influence of Environmental Pollution , 2018 .
[3] Hai-Feng Huo,et al. Dynamics analysis of a predator–prey system with harvesting prey and disease in prey species , 2018, Journal of biological dynamics.
[4] Antoine Flahault,et al. Climate change and infectious diseases , 2016, Public Health Reviews.
[5] Nitu Kumari,et al. DOES WATER DISINFECTANT PLAY A SUPPORTIVE ROLE IN THE SPREAD OF INFECTIOUS DISEASE? A MATHEMATICAL STUDY , 2016 .
[6] R. Schwarzenbach,et al. Global Water Pollution and Human Health , 2010 .
[7] C. Connell McCluskey,et al. Complete global stability for an SIR epidemic model with delay — Distributed or discrete , 2010 .
[8] Zhien Ma,et al. Dynamical Modeling and Analysis of Epidemics , 2009 .
[9] A. Dobson. Climate variability, global change, immunity, and the dynamics of infectious diseases. , 2009, Ecology.
[10] M. Keeling,et al. Modeling Infectious Diseases in Humans and Animals , 2007 .
[11] Huaiping Zhu,et al. The Impact of Media on the Control of Infectious Diseases , 2007, Journal of dynamics and differential equations.
[12] Junjie Wei,et al. Bifurcation analysis for Chen's system with delayed feedback and its application to control of chaos , 2004 .
[13] Carlos Castillo-Chavez,et al. Dynamical models of tuberculosis and their applications. , 2004, Mathematical biosciences and engineering : MBE.
[14] R. Holt,et al. How should environmental stress affect the population dynamics of disease , 2003 .
[15] J. Watmough,et al. Reproduction numbers and sub-threshold endemic equilibria for compartmental models of disease transmission. , 2002, Mathematical biosciences.
[16] Herbert W. Hethcote,et al. The Mathematics of Infectious Diseases , 2000, SIAM Rev..
[17] O. Diekmann,et al. Mathematical Epidemiology of Infectious Diseases: Model Building, Analysis and Interpretation , 2000 .
[18] V. Capasso. Mathematical Structures of Epidemic Systems , 1993, Lecture Notes in Biomathematics.
[19] Kenneth L. Cooke,et al. Stability analysis for a vector disease model , 1979 .
[20] P E Sartwell,et al. The incubation period and the dynamics of infectious disease. , 1966, American journal of epidemiology.
[21] J. O. Irwin,et al. MATHEMATICAL EPIDEMIOLOGY , 1958 .
[22] Mercedes Pascual,et al. Climate change and infectious diseases : Can we meet the needs for better prediction ? , 2013 .
[23] K. Schneider. Hassard, B. D. / Kazarinoff, N. D. / Wan, Y.-H., Theory and Applications of Hopf Bifurcation. London Mathematical Society Lecture Note Series 41. Cambridge, Cambridge University Press 1981. 320 S., £ 15.00 A P/B. ISBN 0-521-23158-2 , 1982 .
[24] B. Hassard,et al. Theory and applications of Hopf bifurcation , 1981 .