生物
生物扩散
传输(电信)
生态学
人口学
人口
电气工程
工程类
社会学
作者
Miguel I. Paredes,Niyaz Ahmed,Marlin D. Figgins,Eugenio Valdano,Philippe Lemey,John McCrone,Nicola F. Müller,Cécile Tran Kiem,Trevor Bedford
出处
期刊:Cell
[Cell Press]
日期:2024-02-01
被引量:1
标识
DOI:10.1016/j.cell.2024.02.003
摘要
Summary
The World Health Organization declared mpox a public health emergency of international concern in July 2022. To investigate global mpox transmission and population-level changes associated with controlling spread, we built phylogeographic and phylodynamic models to analyze MPXV genomes from five global regions together with air traffic and epidemiological data. Our models reveal community transmission prior to detection, changes in case reporting throughout the epidemic, and a large degree of transmission heterogeneity. We find that viral introductions played a limited role in prolonging spread after initial dissemination, suggesting that travel bans would have had only a minor impact. We find that mpox transmission in North America began declining before more than 10% of high-risk individuals in the USA had vaccine-induced immunity. Our findings highlight the importance of broader routine specimen screening surveillance for emerging infectious diseases and of joint integration of genomic and epidemiological information for early outbreak control.
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