模拟超级传播者在COVID-19传播动力学中的潜在作用

J. Mushanyu, W. Chukwu, F. Nyabadza, G. Muchatibaya
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引用次数: 9

摘要

在许多国家,许多传染病都出现了超传播现象,严重增加了公共卫生负担。最近报告了COVID-19大流行传播中的超级传播事件。本研究使用一组9个常微分方程来研究超传播对COVID-19动态的影响。本研究开发的模型通过考虑基于临床(传染性水平)和社会或环境(接触水平)的超传播者的两种形式的传播率函数,解决了传染性的异质性。导出了基本复制数,并确定了每个感染室对新病例产生的贡献。进行数据拟合,并在合理范围内估计参数值。数值模拟结果表明,在超传播现象存在的情况下,减小有效接触半径、提高传播速率指数的防控措施将大大有利于防控
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling the potential role of super spreaders on COVID-19 transmission dynamics
Superspreading phenomenon has been observed in many infectious diseases and contributes significantly to public health burden in many countries. Superspreading events have recently been reported in the transmission of the COVID-19 pandemic. The present study uses a set of nine ordinary differential equations to investigate the impact of superspreading on COVID-19 dynamics. The model developed in this study addresses the heterogeineity in infectiousness by taking into account two forms of transmission rate functions for superspreaders based on clinical (infectivity level) and social or environmental (contact level). The basic reproduction number has been derived and the contribution of each infectious compartment towards the generation of new COVID-19 cases is ascertained. Data fitting was performed and parameter values were estimated within plausible ranges. Numerical simulations performed suggest that control measures that decrease the effective contact radius and increase the transmission rate exponent will be greatly beneficial in the control of COVID-19 in the presence of superspreading phenomen
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