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Design and analysis of multilevel analytic studies with applications to a study of air pollution.

机译:多级分析研究的设计和分析并应用于空气污染研究。

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摘要

We discuss a hybrid epidemiologic design that aims to combine two approaches to studying exposure-disease associations. The analytic approach is based on comparisons between individuals, e.g., case-control and cohort studies, and the ecologic approach is based on comparisons between groups. The analytic approach generally provides a stronger basis for inference, in part because of freedom from between-group confounding and better quality data, but the ecologic approach is less susceptible to attenuation bias from measurement error and may provide greater variability in exposure. The design we propose entails selection of a number of groups and enrollment of individuals within each group. Exposures, outcomes, confounders, and modifiers would be assessed on each individual; but additional exposure data might be available on the groups. The analysis would then combine the individual-level and the group-level comparisons, with appropriate adjustments for exposure measurement errors, and would test for compatibility between the two levels of analysis, e.g., to determine whether the associations at the individual level can account for the differences in disease rates between groups. Trade-offs between numbers of groups, numbers of individuals, and the extent of the individual and group measurement protocols are discussed in terms of design efficiency. These issues are illustrated in the context of an on-going study of the health effects of air pollution in southern California, in which 12 communities with different levels and types of pollution have been selected and 3500 school children are being enrolled in a ten-year cohort study.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:我们讨论了一种混合流行病学设计,旨在结合两种方法来研究暴露-疾病关联。分析方法是基于个体之间的比较,例如病例对照研究和队列研究,而生态学方法则是基于群体之间的比较。分析方法通常为推断提供了更强的基础,部分原因是不受组间混淆和质量更好的数据的影响,但是生态方法不太容易受到测量误差引起的衰减偏差的影响,并且可能提供更大的暴露变化性。我们提出的设计需要选择多个组,并在每个组中招募个人。暴露,结果,混杂因素和修饰语将对每个人进行评估;但是其他曝光数据可能在各组中可用。然后,该分析将结合个人级别和组级别的比较,并针对暴露度测量误差进行适当的调整,并测试两个分析级别之间的兼容性,例如,确定个人级别的关联是否可以解释两组之间疾病发生率的差异。根据设计效率,讨论了组数,个体数以及个体和组度量协议范围之间的权衡。在对加利福尼亚南部空气污染的健康影响进行的持续研究的背景下说明了这些问题,在该研究中,选择了12个污染水平和类型不同的社区,并在十年内招收了3500名学童队列研究(摘要以250字截断)

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