在COVID-19期间不进行检测而重新开放大学:评估低风险国家可能的替代战略

J. Xi, Wai Kin (Victor) Chan
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引用次数: 1

摘要

在2019冠状病毒病期间,全球学生的安全仍然是一个关键问题。2020年秋季,高风险国家的大学重新开放,导致了多起疫情。虽然定期在校园进行筛查和检测可以防止新冠病毒的传播,但由于成本和物流等各种原因,实施起来极具挑战性。然而,对于最低限度或没有社区传播的低风险国家,我们的研究表明,如果学生在抵达后进行14天的自我隔离并采取适当的非药物干预措施(npi),大学可以在没有检测的情况下完全开学。这种替代策略可能会为机构节省数百万美元。我们采用基于agent的模拟方法来模拟病毒在校园的传播,并在学校开学时测试几种npi的有效性。假设一名最初被感染的学生,结果表明室友之间的传播导致访客、地面层和电梯的感染最多,这是下一个主要贡献者。限制密度和/或人口数量对平坦曲线没有影响。然而,戴口罩、减少活动、增加清洁频率,可以有效地减少感染,防止疫情爆发,使课堂和活动恢复正常。
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Reopening Universities without Testing During COVID-19: Evaluating a Possible Alternative Strategy in Low Risk Countries
The safety of students worldwide remains a key issue during COVID-19. The reopening of universities in high risk countries during Fall 2020 resulted in numerous outbreaks. While regular screening and testing on campus can prevent the transmission of SARS-CoV-2, they are extremely challenging to implement due to various reasons such as cost and logistics. However, for low risk countries with minimal to no community spread, our study suggests that universities can fully reopen without testing, if students self-quarantine for 14 days on arrival and adopt proper nonpharmaceutical interventions (NPIs). This alternative strategy might save institutions millions of dollars. We adopt agent-based simulation to model virus transmission on campus and test the effectiveness of several NPIs when school reopens. Assuming one initially infected student, results indicate that transmission between roommates causes the most infections with visitors, ground floors, and elevators, being the next main contributors. Limiting density and/or population are not impactful at flattening the curve. However, adopting masks, minimizing movement, and increasing the frequency of cleaning can effectively minimize infection and prevent outbreak, allowing for classes and activities to resume as normal.
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