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基于分层隔离和时间延迟对新冠疫情进行建模

Modeling COVID-19 Pandemic with Hierarchical Quarantine and Time Delay.

作者信息

Yang Wei

机构信息

Software College, Northeastern University, Shenyang, 110169 China.

出版信息

Dyn Games Appl. 2021;11(4):892-914. doi: 10.1007/s13235-021-00382-3. Epub 2021 Mar 24.

Abstract

COVID-19 comes out as a sudden pandemic disease within human population. The pandemic dynamics of COVID-19 needs to be studied in detail. A pandemic model with hierarchical quarantine and time delay is proposed in this paper. In the COVID-19 case, the virus incubation period and the antibody failure will cause the time delay and reinfection, respectively, and the hierarchical quarantine strategy includes home isolation and quarantine in hospital. These factors that affect the spread of COVID-19 are well considered and analyzed in the model. The stability of the equilibrium and the nonlinear dynamics is studied as well. The threshold value of the bifurcation is deduced and quantitatively analyzed. Numerical simulations are performed to establish the analytical results with suitable examples. The research reveals that the COVID-19 outbreak may recur over a period of time, which can be helpful to increase the number of tested people with or without symptoms in order to be able to early identify the clusters of infection. And before the effective vaccine is successfully developed, the hierarchical quarantine strategy is currently the best way to prevent the spread of this pandemic.

摘要

新冠疫情作为一种突发的全球性大流行病出现在人类群体中。需要详细研究新冠疫情的流行动态。本文提出了一种具有分层隔离和时间延迟的大流行模型。在新冠疫情的情况下,病毒潜伏期和抗体失效将分别导致时间延迟和再次感染,并且分层隔离策略包括居家隔离和医院隔离。模型中充分考虑并分析了这些影响新冠疫情传播的因素。还研究了平衡点的稳定性和非线性动力学。推导并定量分析了分岔的阈值。通过合适的例子进行数值模拟以建立分析结果。研究表明,新冠疫情爆发可能会在一段时间内反复出现,这有助于增加有症状和无症状检测人群的数量,以便能够早期识别感染聚集情况。并且在有效疫苗成功研发之前,分层隔离策略目前是防止这种大流行病传播的最佳方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3921/7988386/82ada7507125/13235_2021_382_Fig1_HTML.jpg

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