Leveraging A Multiple-Strain Model with Mutations in Analyzing the Spread of Covid-19

Anirudh Sridhar, Osman Yağan, Rashad M. Eletreby, S. Levin, J. Plotkin, H. Poor
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引用次数: 10

Abstract

The spread of COVID-19 has been among the most devastating events affecting the health and well-being of humans worldwide since World War II. A key scientific goal concerning COVID-19 is to develop mathematical models that help us to understand and predict its spreading behavior, as well as to provide guidelines on what can be done to limit its spread. In this paper, we discuss how our recent work on a multiple-strain spreading model with mutations can help address some key questions concerning the spread of COVID-19. We highlight the recent reports on a mutation of SARS-CoV-2 that is thought to be more transmissible than the original strain and discuss the importance of incorporating mutation and evolutionary adaptations (together with the network structure) in epidemic models. We also demonstrate how the multiple-strain transmission model can be used to assess the effectiveness of mask-wearing in limiting the spread of COVID-19. Finally, we present simulation results to demonstrate our ideas and the utility of the multiple-strain model in the context of COVID-19.
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利用多株突变模型分析Covid-19的传播
自第二次世界大战以来,COVID-19的传播是影响全球人类健康和福祉的最具破坏性的事件之一。关于COVID-19的一个关键科学目标是建立数学模型,帮助我们理解和预测其传播行为,并为如何限制其传播提供指导。在本文中,我们讨论了我们最近在带有突变的多菌株传播模型上的工作如何有助于解决有关COVID-19传播的一些关键问题。我们强调了最近关于SARS-CoV-2突变的报道,该突变被认为比原始菌株更具传染性,并讨论了在流行模型中纳入突变和进化适应(连同网络结构)的重要性。我们还演示了如何使用多菌株传播模型来评估戴口罩限制COVID-19传播的有效性。最后,我们给出了仿真结果来证明我们的想法和多应变模型在COVID-19背景下的实用性。
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