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Superinfection in Networks

机译:网络中的超级感染

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摘要

We introduce an extension of the SIS epidemic model that describes infection, mutation and curing for a whole hierarchy of viruses, resembling a nested spreading process. In our model, high level viruses are only allowed to spread to nodes that have acquired a lower level of infection before. The simplest case of two viruses, in which one "superinfects" the other, shows already rich dynamics that are difficult to predict by common mean-field approximation techniques in certain cases. We derive an exact Markovian description for superinfection in the complete network and the star network showing that the steady state of the epidemic process is highly sensitive to the spreading rate of both viruses. Taking the spreading rates into account, we outline conditions for epidemic outbreaks, coexistence of both viruses and extinction cycles.
机译:我们介绍了SIS流行病模型的扩展,该模型描述了整个病毒层次结构的感染,突变和治愈,类似于嵌套传播过程。在我们的模型中,仅允许高级别病毒传播到之前已获得较低感染级别的节点。在两种病毒最简单的情况下,一种病毒“重叠感染”另一种病毒,显示出已经丰富的动态特性,在某些情况下很难通过普通的平均场近似技术进行预测。我们得出了完整网络和星型网络中超级感染的精确马尔可夫描述,表明流行过程的稳定状态对两种病毒的传播速度高度敏感。考虑到传播速度,我们概述了流行病暴发,病毒并存和灭绝周期的条件。

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