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传染病模型的敏感性分析:方法、进展及其应用。

Sensitivity analysis of infectious disease models: methods, advances and their application.

机构信息

Department of Environmental Health, Rollins School of Public Health, Emory University, 1518 Clifton Road NE, Atlanta, GA 30322, USA.

出版信息

J R Soc Interface. 2013 Jul 17;10(86):20121018. doi: 10.1098/rsif.2012.1018. Print 2013 Sep 6.

Abstract

Sensitivity analysis (SA) can aid in identifying influential model parameters and optimizing model structure, yet infectious disease modelling has yet to adopt advanced SA techniques that are capable of providing considerable insights over traditional methods. We investigate five global SA methods-scatter plots, the Morris and Sobol' methods, Latin hypercube sampling-partial rank correlation coefficient and the sensitivity heat map method-and detail their relative merits and pitfalls when applied to a microparasite (cholera) and macroparasite (schistosomaisis) transmission model. The methods investigated yielded similar results with respect to identifying influential parameters, but offered specific insights that vary by method. The classical methods differed in their ability to provide information on the quantitative relationship between parameters and model output, particularly over time. The heat map approach provides information about the group sensitivity of all model state variables, and the parameter sensitivity spectrum obtained using this method reveals the sensitivity of all state variables to each parameter over the course of the simulation period, especially valuable for expressing the dynamic sensitivity of a microparasite epidemic model to its parameters. A summary comparison is presented to aid infectious disease modellers in selecting appropriate methods, with the goal of improving model performance and design.

摘要

敏感性分析(Sensitivity Analysis,SA)可以帮助识别有影响力的模型参数并优化模型结构,但传染病建模尚未采用能够提供比传统方法更深入见解的先进 SA 技术。我们研究了五种全局 SA 方法——散点图、Morris 和 Sobol'方法、拉丁超立方采样——部分秩相关系数和敏感性热图方法,并详细说明了它们在应用于微观寄生虫(霍乱)和宏观寄生虫(血吸虫病)传播模型时的相对优点和缺点。所研究的方法在确定有影响的参数方面产生了相似的结果,但每种方法都提供了特定的见解。经典方法在提供有关参数与模型输出之间定量关系的信息方面存在差异,尤其是随着时间的推移。热图方法提供了有关所有模型状态变量的组敏感性的信息,并且使用这种方法获得的参数敏感性谱揭示了所有状态变量对每个参数的敏感性在模拟期间的变化,这对于表达微观寄生虫流行模型对其参数的动态敏感性特别有价值。我们提出了一个总结比较,以帮助传染病建模者选择合适的方法,目的是提高模型性能和设计。

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