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A discrete-time analog for coupled within-host and between-host dynamics in environmentally driven infectious disease

机译:用于环境驱动的传染病中宿主内部和宿主之间动态耦合的离散时间模拟

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摘要

In this paper, we establish a discrete-time analog for coupled within-host and between-host systems for an environmentally driven infectious disease with fast and slow two time scales by using the non-standard finite difference scheme. The system is divided into a fast time system and a slow time system by using the idea of limit equations. For the fast system, the positivity and boundedness of the solutions, the basic reproduction number and the existence for infection-free and unique virus infectious equilibria are obtained, and the threshold conditions on the local stability of equilibria are established. In the slow system, except for the positivity and boundedness of the solutions, the existence for disease-free, unique endemic and two endemic equilibria are obtained, and the sufficient conditions on the local stability for disease-free and unique endemic equilibria are established. To return to the coupling system, the local stability for the virus- and disease-free equilibrium, and virus infectious but disease-free equilibrium is established. The numerical examples show that an endemic equilibrium is locally asymptotically stable and the other one is unstable when there are two endemic equilibria.
机译:在本文中,我们通过使用非标准有限差分方案,为环境驱动的传染病在快速和慢速两个时间尺度上建立了耦合的宿主内部和宿主之间系统的离散时间模拟。通过使用极限方程的思想,该系统分为快速系统和慢速系统。对于快速系统,获得了溶液的正性和有界性,基本的繁殖数以及无感染和独特病毒感染平衡的存在性,并建立了平衡局部稳定性的阈值条件。在慢系统中,除了溶液的正负性和有界性外,获得了无病,唯一地方性和两个地方性均衡的存在性,并为无病和唯一地方性均衡的局部稳定性建立了充分条件。为了返回耦合系统,建立了无病毒和无病平衡的局部稳定性以及病毒感染但无病的平衡。数值例子表明,当存在两个地方均衡时,地方均衡是局部渐近稳定的,另一个是不稳定的。

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