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The effect of the infection within the individual host on its propagation in the population

机译:个体宿主内感染对其在人群中传播的影响

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摘要

We consider nested or multiscale models to study the effect of the temporal evolution of the disease within the host in the population dynamics of the disease, for one and two infectious agents. We assumed a coupling between the within-host infection rate and the between-host transmission rate. The age of infection within each individual in a population affects the probability of transmission of the disease to a susceptible host and this will affect the temporal evolution of the disease in the host population. To analyze the infection within the host, we consider bacterial-like and viral-like infections. In the model for two infectious agents, we found that, when strain 2 has a basic reproduction number R02 greater than the basic reproduction number R01 of strain 1, strain 2 replaces strain 1 in the population. However, if R02>R01 but the values are closer, the replacement does not occur immediately and both strains can coexist for a long time. We applied the model to a scenario in which patients infected with the hepatitis C virus (HCV) are cleared of HCV when super-infected with the hepatitis A virus (HAV). We compared the time for the replacement of HCV by HAV in the population considering instantaneous and non-instantaneous replacement within the individuals. The model developed can be generalized for more than two infectious agents.
机译:我们考虑使用嵌套或多尺度模型来研究一种和两种传染原在宿主体内疾病的时间演变对疾病种群动态的影响。我们假设主机内感染率和主机间传播率之间存在耦合。人群中每个个体内的感染年龄影响疾病传播给易感宿主的可能性,这将影响宿主群体中疾病的时间演变。为了分析宿主内的感染,我们考虑细菌样和病毒样感染。在两个传染原的模型中,我们发现,当菌株2具有基本繁殖数 R 02 大于基本复制数 R 01 菌株1,菌株2替换了种群中的菌株1。但是,如果 R 02 R 01 ,但值比较近,替换不会立即发生,并且两种菌株可以长期共存。我们将该模型应用于一种场景,在这种情况下,当丙型肝炎病毒(HCV)感染了超级甲型肝炎病毒(HAV)时,患者就清除了HCV。考虑到个体内的瞬时和非瞬时替代,我们比较了人群中用HAV替代HCV的时间。开发的模型可以推广用于两种以上的传染原。

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