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Analysis of the Impact of Mask-wearing in Viral Spread: Implications for COVID-19

机译:分析薄膜磨损在病毒扩散的影响:Covid-19的影响

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Masks are used as part of a comprehensive strategy of measures to limit transmission and save lives during the COVID-19 pandemic. Research about the impact of mask-wearing in the COVID-19 pandemic has raised formidable interest across multiple disciplines. In this paper, we investigate the impact of mask-wearing in spreading processes over complex networks. This is done by studying a heterogeneous bond percolation process over a multi-type network model, where nodes can be one of two types (mask-wearing, and not-mask-wearing). We provide analytical results that accurately predict the expected epidemic size and probability of emergence as functions of the characteristics of the spreading process (e.g., transmission probabilities, inward and outward efficiency of the masks, etc.), the proportion of mask-wearers in the population, and the structure of the underlying contact network. In addition to the theoretical analysis, we also conduct extensive simulations on random networks. We also comment on the analogy between the mask-model studied here and the multiple-strain viral spreading model with mutations studied recently by Eletreby et al.
机译:面具被用作措施综合战略的一部分,以限制传播,并在Covid-19大流行期间拯救生命。关于在Covid-19大流行中的面膜穿着的影响的研究已经促进了多个学科的强大兴趣。在本文中,我们调查了掩模穿着在复杂网络上传播过程的影响。这是通过在多型网络模型上研究异质绑定渗透过程来完成的,其中节点可以是两种类型中的一种(掩模佩戴和不掩盖佩戴)。我们提供分析结果,即准确地预测所预期的流行病尺寸和出现的概率作为传播过程的特征的功能(例如,透射概率,面罩的向外效率等),掩模佩戴者的比例人口,以及潜在联系网络的结构。除了理论分析之外,我们还对随机网络进行了广泛的模拟。我们还评论了这里研究的掩模模型之间的类比,并且Eletreby等人最近研究了具有突变的多重菌株病毒扩展模型。

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