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传染病暴发的基因聚类方法的影响与不足

Impacts and shortcomings of genetic clustering methods for infectious disease outbreaks.

作者信息

Poon Art F Y

机构信息

Department of Pathology and Laboratory Medicine, Western University, London, Canada.

出版信息

Virus Evol. 2016 Oct 20;2(2):vew031. doi: 10.1093/ve/vew031. eCollection 2016 Jul.

Abstract

For infectious diseases, a genetic cluster is a group of closely related infections that is usually interpreted as representing a recent outbreak of transmission. Genetic clustering methods are becoming increasingly popular for molecular epidemiology, especially in the context of HIV where there is now considerable interest in applying these methods to prioritize groups for public health resources such as pre-exposure prophylaxis. To date, genetic clustering has generally been performed with algorithms, only some of which have since been encoded and distributed as free software. These algorithms have seldom been validated on simulated data where clusters are known, and their interpretation and similarities are not transparent to users outside of the field. Here, I provide a brief overview on the development and inter-relationships of genetic clustering methods, and an evaluation of six methods on data simulated under an epidemic model in a risk-structured population. The simulation analysis demonstrates that the majority of clustering methods are systematically biased to detect variation in sampling rates among subpopulations, not variation in transmission rates. I discuss these results in the context of previous work and the implications for public health applications of genetic clustering.

摘要

对于传染病而言,基因簇是一组密切相关的感染,通常被解释为代表近期的传播暴发。基因聚类方法在分子流行病学中越来越受欢迎,尤其是在艾滋病病毒(HIV)领域,目前人们对应用这些方法来确定公共卫生资源(如暴露前预防)的优先分配群体有着浓厚兴趣。迄今为止,基因聚类通常是使用算法进行的,其中只有一些算法后来被编码并作为免费软件发布。这些算法很少在已知簇的模拟数据上进行验证,而且对于该领域之外的用户来说,它们的解释和相似性并不透明。在此,我简要概述基因聚类方法的发展及其相互关系,并对在风险结构人群中流行模型下模拟的数据上的六种方法进行评估。模拟分析表明,大多数聚类方法在检测亚人群抽样率的差异方面存在系统性偏差,而非传播率的差异。我结合先前的研究工作讨论这些结果以及基因聚类在公共卫生应用中的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39dd/5210024/a947752a2c98/vew031f1p.jpg

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