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霍乱疫情如野火般迅速蔓延。

Epidemic cholera spreads like wildfire.

作者信息

Roy Manojit, Zinck Richard D, Bouma Menno J, Pascual Mercedes

机构信息

1] University of Michigan, Department of Ecology and Evolutionary Biology, 2045 Kraus Natural Science Bldg., 830 N. University, Ann Arbor, MI 48109-1048, USA [2] Howard Hughes Medical Institute, Chevy Chase, MD, USA.

1] University of Michigan, Department of Ecology and Evolutionary Biology, 2045 Kraus Natural Science Bldg., 830 N. University, Ann Arbor, MI 48109-1048, USA [2].

出版信息

Sci Rep. 2014 Jan 15;4:3710. doi: 10.1038/srep03710.

Abstract

Cholera is on the rise globally, especially epidemic cholera which is characterized by intermittent and unpredictable outbreaks that punctuate periods of regional disease fade-out. These epidemic dynamics remain however poorly understood. Here we examine records for epidemic cholera over both contemporary and historical timelines, from Africa (1990-2006) and former British India (1882-1939). We find that the frequency distribution of outbreak size is fat-tailed, scaling approximately as a power-law. This pattern which shows strong parallels with wildfires is incompatible with existing cholera models developed for endemic regions, as it implies a fundamental role for stochastic transmission and local depletion of susceptible hosts. Application of a recently developed forest-fire model indicates that epidemic cholera dynamics are located above a critical phase transition and propagate in similar ways to aggressive wildfires. These findings have implications for the effectiveness of control measures and the mechanisms that ultimately limit the size of outbreaks.

摘要

霍乱在全球范围内呈上升趋势,尤其是流行性霍乱,其特点是间歇性和不可预测的疫情爆发,打断了区域疾病消退的时期。然而,这些流行动态仍未得到很好的理解。在这里,我们研究了当代和历史时间线上非洲(1990 - 2006年)和前英属印度(1882 - 1939年)的流行性霍乱记录。我们发现疫情爆发规模的频率分布是重尾的,近似于幂律分布。这种与野火有强烈相似之处的模式与为地方性流行地区开发的现有霍乱模型不相符,因为这意味着随机传播和易感宿主的局部耗竭具有根本作用。应用最近开发的森林火灾模型表明,流行性霍乱动态处于临界相变之上,并以与剧烈野火类似的方式传播。这些发现对控制措施的有效性以及最终限制疫情爆发规模的机制具有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ed0/3892719/a6736facd042/srep03710-f1.jpg

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