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基于动态模型估算2022年2月中国北京冬奥会期间运动员中的新增病例数

Estimating New Cases Among Athletes During the Winter Olympics Based on a Dynamic Model - Beijing, China, February 2022.

作者信息

Zhang Zonghao, Huang Xiaotong, Xu Chuanqing, Wang Xiaojing, Guo Songbai

机构信息

Department of Mathematics and Data Science, Beijing University of Civil Engineering and Architecture, Beijing, China.

出版信息

China CDC Wkly. 2022 Jul 29;4(30):660-664. doi: 10.46234/ccdcw2022.131.

Abstract

INTRODUCTION

Since first appearing in late 2021, the Omicron variant has spread rapidly around the world. Nevertheless, the XXIV Winter Olympic Games (WOG) were held in Beijing in February 2022, which undoubtedly posed a huge challenge to domestic epidemic prevention and control.

METHODS

To analyze and evaluate the spread of the epidemic within the closed-loop management of the Beijing 2022 WOG, an improved dynamics model was established. Using the known dynamics parameters, the new daily cases and final members of quarantined people were predicted, and the influence of different factors on the change of the number of quarantined people was analyzed.

RESULTS

When the proportion of exposed persons being detected and the degree of admixture between the two populations varied between 0.5 and 0.9, there was little change in the daily predicted number of new cases and the final number of quarantined patients. As the initial value of the exposed among inbound personnel increased, the final size of quarantined patients increased proportionally.

DISCUSSION

From the analysis results, detecting potential virus carriers at the entry stage is the most effective way to control the spread of the epidemic within the closed-loop management of the Beijing 2022 WOG.

摘要

引言

自2021年末首次出现以来,奥密克戎变异株在全球迅速传播。尽管如此,2022年2月第24届冬季奥林匹克运动会(冬奥会)在北京举行,这无疑给国内疫情防控带来了巨大挑战。

方法

为分析和评估2022年北京冬奥会闭环管理内疫情的传播情况,建立了一个改进的动力学模型。利用已知的动力学参数,预测了每日新增病例数和最终隔离人员数量,并分析了不同因素对隔离人员数量变化的影响。

结果

当暴露者被检测出的比例以及两类人群的混合程度在0.5至0.9之间变化时,每日预测新增病例数和最终隔离患者数变化不大。随着入境人员中暴露者的初始值增加,隔离患者的最终规模也相应增加。

讨论

从分析结果来看,在入境阶段检测潜在病毒携带者是控制2022年北京冬奥会闭环管理内疫情传播的最有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6349/9433765/6d92dfb53e10/ccdcw-4-30-660-1.jpg

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