过度分散
2019年冠状病毒病(COVID-19)
传输(电信)
爆发
占用率
空中传输
严重急性呼吸综合征冠状病毒2型(SARS-CoV-2)
传染病(医学专业)
大流行
统计
生物
医学
生态学
计算机科学
数学
疾病
病毒学
计数数据
电信
病理
泊松分布
作者
Swetaprovo Chaudhuri,P. S. Kasibhatla,Arnab Mukherjee,William Pan,Glenn Morrison,Sharmistha Mishra,V. Kumar Murty
出处
期刊:Physics of Fluids
[American Institute of Physics]
日期:2022-05-01
卷期号:34 (5)
被引量:7
摘要
Superspreading events and overdispersion are hallmarks of the COVID-19 pandemic. However, the specific roles and influence of established viral and physical factors related to the mechanisms of transmission, on overdispersion, remain unresolved. We, therefore, conducted mechanistic modeling of SARS-CoV-2 point-source transmission by infectious aerosols using real-world occupancy data from more than 100 000 social contact settings in ten US metropolises. We found that 80% of secondary infections are predicted to arise from approximately 4% of index cases, which show up as a stretched tail in the probability density function of secondary infections per infectious case. Individual-level variability in viral load emerges as the dominant driver of overdispersion, followed by occupancy. We then derived an analytical function, which replicates the simulated overdispersion, and with which we demonstrate the effectiveness of potential mitigation strategies. Our analysis, connecting the mechanistic understanding of SARS-CoV-2 transmission by aerosols with observed large-scale epidemiological characteristics of COVID-19 outbreaks, adds an important dimension to the mounting body of evidence with regard to airborne transmission of SARS-CoV-2 and thereby emerges as a powerful tool toward assessing the probability of outbreaks and the potential impact of mitigation strategies on large scale disease dynamics.
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