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The effectiveness of quarantine of Wuhan city against the Corona Virus Disease 2019 (COVID‐19): A well‐mixed SEIR model analysis

机译:武汉市检疫效果对2019年电晕病毒疾病(Covid-19):一种混合良好的SEIR模型分析

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Abstract A novel coronavirus pneumonia, first identified in Wuhan City and referred to as COVID‐19 by the World Health Organization, has been quickly spreading to other cities and countries. To control the epidemic, the Chinese government mandated a quarantine of the Wuhan city on January 23, 2020. To explore the effectiveness of the quarantine of the Wuhan city against this epidemic, transmission dynamics of COVID‐19 have been estimated. A well‐mixed “susceptible exposed infectious recovered” (SEIR) compartmental model was employed to describe the dynamics of the COVID‐19 epidemic based on epidemiological characteristics of individuals, clinical progression of COVID‐19, and quarantine intervention measures of the authority. Considering infected individuals as contagious during the latency period, the well‐mixed SEIR model fitting results based on the assumed contact rate of latent individuals are within 6–18, which represented the possible impact of quarantine and isolation interventions on disease infections, whereas other parameter were suppose as unchanged under the current intervention. The present study shows that, by reducing the contact rate of latent individuals, interventions such as quarantine and isolation can effectively reduce the potential peak number of COVID‐19 infections and delay the time of peak infection.
机译:摘要在武汉市首次发现的新型冠状病毒肺炎,并被世界卫生组织被称为Covid-19,一直迅速向其他城市和国家传播。为了控制流行病,中国政府于2020年1月23日授权武汉市检疫。估计武汉市检疫检疫的有效性,据估计了Covid-19的传播动态。利用良好混合的“易感暴露的感染性恢复”(SEIR)分区模型来描述Covid-19流行病的动态,基于个体的流行病学特征,Covid-19的临床进展和管理局的检疫干预措施。考虑到在潜伏期期间认为感染的个体具有传染性,基于潜在个体的假定接触率的混合SEIR模型拟合结果在6-18之内,这代表了检疫和分离干预对疾病感染的可能影响,而其他参数假设在目前的干预下保持不变。本研究表明,通过降低潜在个体的接触率,诸如检疫和分离的干预率可以有效地降低Covid-19感染的潜在峰值数量和延迟峰感染的时间。

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