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流感传播中的同步性、波和空间层次结构。

Synchrony, waves, and spatial hierarchies in the spread of influenza.

作者信息

Viboud Cécile, Bjørnstad Ottar N, Smith David L, Simonsen Lone, Miller Mark A, Grenfell Bryan T

机构信息

Fogarty International Center, National Institutes of Health, Bethesda, MD 20892, USA.

出版信息

Science. 2006 Apr 21;312(5772):447-51. doi: 10.1126/science.1125237. Epub 2006 Mar 30.

Abstract

Quantifying long-range dissemination of infectious diseases is a key issue in their dynamics and control. Here, we use influenza-related mortality data to analyze the between-state progression of interpandemic influenza in the United States over the past 30 years. Outbreaks show hierarchical spatial spread evidenced by higher pairwise synchrony between more populous states. Seasons with higher influenza mortality are associated with higher disease transmission and more rapid spread than are mild ones. The regional spread of infection correlates more closely with rates of movement of people to and from their workplaces (workflows) than with geographical distance. Workflows are described in turn by a gravity model, with a rapid decay of commuting up to around 100 km and a long tail of rare longer range flow. A simple epidemiological model, based on the gravity formulation, captures the observed increase of influenza spatial synchrony with transmissibility; high transmission allows influenza to spread rapidly beyond local spatial constraints.

摘要

量化传染病的远距离传播是其动态变化和防控中的关键问题。在此,我们利用与流感相关的死亡率数据,分析过去30年美国大流行间期流感在州与州之间的传播进程。疫情呈现出分层的空间传播模式,人口较多的州之间两两同步性更高便是证明。与流感死亡率较低的季节相比,流感死亡率较高的季节疾病传播率更高,传播速度也更快。感染的区域传播与人员往返工作场所的流动率(工作流)的相关性,比与地理距离的相关性更为密切。工作流又由一个引力模型来描述,通勤在约100公里范围内迅速衰减,而罕见的长距离流动则呈长尾分布。一个基于引力公式的简单流行病学模型,捕捉到了观察到的流感空间同步性随传播力增加的情况;高传播力使流感能够迅速突破局部空间限制进行传播。

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