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Effect of the Number of Patches in a Multi-patch SIRS Model with Fast Migration on the Basic Reproduction Rate

机译:具有快速迁移的多补丁SIRS模型中补丁数量对基本繁殖率的影响

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We consider a two-patch epidemiological system where individuals can move from one patch to another, and local interactions between the individuals within a patch are governed by the classical SIRS model. When the time-scale associated with migration is much smaller than the time-scale associated with infection, aggregation methods can be used to simplify the initial complete model formulated as a system of ordinary differential equations. Analysis of the aggregated model then shows that the two-patch basic reproduction rate is smaller than the 1 patch one. We extend this result to a linear chain of P patches (P > 2). These results are illustrated by some examples for which numerical integration of the system of ordinary differential equations is performed. Simulations of an individual based model implemented with a multi-agent system are also carried out.
机译:我们考虑了两补丁流行病学系统,其中个体可以从一个补丁移动到另一个补丁,并且补丁内个体之间的局部交互作用由经典SIRS模型控制。当与迁移相关的时间尺度远小于与感染相关的时间尺度时,可以使用聚合方法来简化由完整的常微分方程系统构成的初始完整模型。对聚合模型的分析表明,两补丁的基本再现速率小于第一补丁的基本再现速率。我们将此结果扩展到P个补丁的线性链(P> 2)。通过一些实例对这些结果进行了说明,并对这些实例进行了常微分方程组的数值积分。还对使用多主体系统实现的基于个人的模型进行了仿真。

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