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Coupling multiscale within-host dynamics and between-host transmission with recovery (SIR) dynamics

机译:耦合多尺度 - 主机内动态以及与恢复(SIR)动态的主机传输

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摘要

Multiscale models that link within-host infection to between-host transmission are valuable tools to progress understanding of viral infectious diseases. In this paper, we present two multiscale models that couple within-host infection to a susceptible-infected-recovered (SIR) model. A disease-induced transmission rate bridges the scales from within to between-host. Our stability analysis on the first model (influenza infection) reveals two equilibrium points for the SIR model that describe endemic scenarios where both susceptible and infected cases maintain nonzero population sizes. Consequently, the between-host system has two bifurcations determined by the corresponding basic reproduction number of the within-host and the size of the infected population at the interior equilibrium point. Analysis on the second model (Ebola infection) reveals the limited transient inhibitory effect of antibodies on viral replication, which influences the time window from infection to a potential outbreak. Simulations numerically illustrate our results.
机译:多尺度模型,链接 - 主机传输之间的主机感染是有价值的工具,以了解病毒传染病的理解。在本文中,我们呈现了两种多尺度模型,对宿主感染耦合到敏感感染恢复(SIR)模型。疾病诱导的传输速率桥接到主机之间的尺度。我们对第一种模型(流感感染)的稳定性分析显示了SIR模型的两个平衡点,描述了某种敏感和受感染的病例维持非零种群尺寸。因此,主机系统具有由内部平衡点内宿主内的相应基本再现数和感染群体的相应基本再现数而确定的两种分叉。第二种模型(埃博拉感染)分析揭示了抗体对病毒复制的有限瞬态抑制作用,这影响了感染从感染到潜在爆发的时间窗口。模拟数字地说明了我们的结果。

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