Frontiers in Public Health · 2020 · 22 citations · 33 references
Countries around the globe have implemented unprecedented measures to mitigate the coronavirus disease 2019 (COVID-19) pandemic. We aim to predict the COVID-19 disease course and compare the effectiveness of mitigation measures across countries to inform policy decision making using a robust and parsimonious survival-convolution model. We account for transmission during a pre-symptomatic incubation period and use a time-varying effective reproduction number (<i>R</i><sub><i>t</i></sub> ) to reflect the temporal trend of transmission and change in response to a public health intervention. We estimate the intervention effect on reducing the transmission rate using a natural experiment design and quantify uncertainty by permutation. In China and South Korea, we predicted the entire disease epidemic using only early phase data (2-3 weeks after the outbreak). A fast rate of decline in <i>R</i><sub><i>t</i></sub> was observed, and adopting mitigation strategies early in the epidemic was effective in reducing the transmission rate in these two countries. The nationwide lockdown in Italy did not accelerate the speed at which the transmission rate decreases. In the United States, <i>R</i><sub><i>t</i></sub> significantly decreased during a 2-week period after the declaration of national emergency, but it declined at a much slower rate afterwards. If the trend continues after May 1, COVID-19 may be controlled by late July. However, a loss of temporal effect (e.g., due to relaxing mitigation measures after May 1) could lead to a long delay in controlling the epidemic (mid-November with fewer than 100 daily cases) and a total of more than 2 million cases.
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Early Transmission Dynamics in Wuhan, China, of Novel Coronavirus–Infected Pneumonia
Qun Li, Xuhua Guan, Peng Wu et al. · New England Journal of Medicine · 2020 · 17.8K citations · Full text
Presumed Asymptomatic Carrier Transmission of COVID-19
Yan Bai, Yao Ling-sheng, Tao Wei et al. · JAMA · 2020 · 4.8K citations · Full text
Virus Epidemiology, Family Members, Emerging Infectious Diseases +12