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使用牛副结核病实例的频率论和贝叶斯方法进行患病率估计

Frequentist and Bayesian approaches to prevalence estimation using examples from Johne's disease.

作者信息

McV Messam Locksley L, Branscum Adam J, Collins Michael T, Gardner Ian A

机构信息

Department of Medicine and Epidemiology, School of Veterinary Medicine, University of California, One Shields Avenue, Davis, CA, USA.

出版信息

Anim Health Res Rev. 2008 Jun;9(1):1-23. doi: 10.1017/S1466252307001314. Epub 2008 Mar 17.

Abstract

Although frequentist approaches to prevalence estimation are simple to apply, there are circumstances where it is difficult to satisfy assumptions of asymptotic normality and nonsensical point estimates (greater than 1 or less than 0) may result. This is particularly true when sample sizes are small, test prevalences are low and imperfect sensitivity and specificity of diagnostic tests need to be incorporated into calculations of true prevalence. Bayesian approaches offer several advantages including direct computation of range-respecting interval estimates (e.g. intervals between 0 and 1 for prevalence) without the requirement of transformations or large-sample approximations, direct probabilistic interpretation, and the flexibility to model in a straightforward manner the probability of zero prevalence. In this review, we present frequentist and Bayesian methods for animal- and herd-level true prevalence estimation based on individual and pooled samples. We provide statistical methods for detecting differences between population prevalence and frequentist methods for sample size and power calculations. All examples are motivated using Mycobacterium avium subspecies paratuberculosis infection and we provide WinBUGS code for all examples of Bayesian estimation.

摘要

虽然频率论方法用于患病率估计易于应用,但在某些情况下,难以满足渐近正态性假设,可能会得出无意义的点估计值(大于1或小于0)。当样本量小、检测患病率低且诊断试验的灵敏度和特异性不完善需要纳入真实患病率计算时,情况尤其如此。贝叶斯方法具有几个优点,包括直接计算尊重范围的区间估计值(例如患病率在0和1之间的区间),无需变换或大样本近似,具有直接概率解释,并且能够灵活地以直接方式对零患病率概率进行建模。在本综述中,我们介绍了基于个体样本和混合样本的动物和畜群水平真实患病率估计的频率论和贝叶斯方法。我们提供了用于检测总体患病率差异的统计方法以及用于样本量和效能计算的频率论方法。所有示例均以副结核分枝杆菌感染为例,并为所有贝叶斯估计示例提供了WinBUGS代码。

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