References
He, S., Peng, Y. and Sun, K. (2020) SEIR Modeling of the COVID-19 and Its Dynamics. Nonlinear Dynamics, 101, 1667-1680. >https://doi.org/10.1007/s11071-020-05743-y
Carcione, J.M., Santos, J.E., Bagaini, C. and Ba, J. (2020) A Simulation of a COVID-19 Epidemic Based on a Deterministic SEIR Model. Frontiers in Public Health, 8, Article 230. >https://doi.org/10.3389/fpubh.2020.00230
Yang, Z., Zeng, Z., Wang, K., Wong, S., Liang, W., Zanin, M., et al. (2020) Modified SEIR and AI Prediction of the Epidemics Trend of COVID-19 in China under Public Health Interventions. Journal of Thoracic Disease, 12, 165-174. >https://doi.org/10.21037/jtd.2020.02.64
Liu, W. (2013) A SIRS Epidemic Model Incorporating Media Coverage with Random Perturbation. Abstract and Applied Analysis, 2013, Article 792308. >https://doi.org/10.1155/2013/792308
Yang, Q. and Mao, X. (2014) Stochastic Dynamics of SIRS Epidemic Models Withrandom Perturbation. Mathematical Biosciences and Engineering, 11, 1003-1025. >https://doi.org/10.3934/mbe.2014.11.1003
Etxeberria-Etxaniz, M., Alonso-Quesada, S. and De la Sen, M. (2020) On an SEIR Epidemic Model with Vaccination of Newborns and Periodic Impulsive Vaccination with Eventual on-Line Adapted Vaccination Strategies to the Varying Levels of the Susceptible Subpopulation. Applied Sciences, 10, Article 8296. >https://doi.org/10.3390/app10228296
Shi, Y., Wen, J. and Xiong, J. (2020) Backward Doubly Stochastic Volterra Integral Equations and Their Applications. Journal of Differential Equations, 269, 6492-6528. >https://doi.org/10.1016/j.jde.2020.05.006
Shaikhet, L. (2020) Stability of Equilibria of Rumor Spreading Model under Stochastic Perturbations. Axioms, 9, Article 24. >https://doi.org/10.3390/axioms9010024
Shaikhet, L. (2013) Lyapunov Functionals and Stability of Stochastic Functional Differential Equations. Springer Science&Business Media.
王克. 随机生物数学模型[M]. 北京: 科学出版社, 2010.
Hale, J.K. (2009) Ordinary Differential Equations. Courier Corporation.