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Global stability for a discrete epidemic model for disease with immunity and latency spreading in a heterogeneous host population

机译:具有异质性宿主群中免疫力和潜伏期的离散疾病流行模型的全局稳定性

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摘要

In this paper, we propose a discrete epidemic model for disease with immunity and latency spreading in a heterogeneous host population, which is derived from the continuous case by using the well-known backward Euler method and by applying a Lyapunov function technique, which is a discrete version of that in the paper by Prss et al. [J. Prss, L. Pujo-Menjouet, G.F. Webb, R. Zacher, Analysis of a model for the dynamics of prions, Discrete Contin. Dyn. Syst. Ser. B 6 (2006) 225235]. It is shown that the global dynamics of this discrete epidemic model with latency are fully determined by a single threshold parameter.
机译:在本文中,我们提出了一种在异质宿主种群中具有免疫力和潜伏期传播的疾病的离散流行病模型,该模型是通过使用众所周知的反向欧拉方法并应用Lyapunov函数技术从连续病例中得出的。 Prss等人在论文中的离散版本。 [J. L.Pujo-Menjouet,G.F. Webb,R。Zacher,病毒动力学模型的分析,离散连续。达因Syst。老师B 6(2006)225235]。结果表明,这种具有时延的离散流行病模型的全局动力学完全由单个阈值参数确定。

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