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On the extinction probability in models of within-host infection: the role of latency and immunity

机译:在宿主内部感染模型中的灭绝概率:潜伏期和免疫力的作用

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Not every exposure to virus establishes infection in the host; instead, the small amount of initial virus could become extinct due to stochastic events. Different diseases and routes of transmission have a different average number of exposures required to establish an infection. Furthermore, the host immune response and antiviral treatment affect not only the time course of the viral load provided infection occurs, but can prevent infection altogether by increasing the extinction probability. We show that the extinction probability when there is a time-dependent immune response depends on the chosen form of the model-specifically, on the presence or absence of a delay between infection of a cell and production of virus, and the distribution of latent and infectious periods of an infected cell. We hypothesise that experimentally measuring the extinction probability when the virus is introduced at different stages of the immune response, alongside the viral load which is usually measured, will improve parameter estimates and determine the most suitable mathematical form of the model.
机译:并非每次接触病毒都会在宿主体内建立感染;相反,少量的初始病毒可能会由于随机事件而灭绝。不同的疾病和传播途径具有建立感染所需的不同平均暴露量。此外,宿主的免疫反应和抗病毒治疗不仅影响发生感染的病毒载量的时间过程,而且可以通过增加灭绝的可能性来完全预防感染。我们表明,存在时间依赖性免疫反应时的灭绝概率取决于模型的选择形式,具体取决于细胞感染和病毒生产之间是否存在延迟,以及潜伏和潜在的分布。感染细胞的感染期。我们假设通过实验测量病毒在免疫反应的不同阶段引入时的灭绝概率,以及通常测得的病毒载量,将改善参数估计并确定模型的最合适数学形式。

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