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Case-Crossover Analysis of Air Pollution Health Effects: A Systematic Review of Methodology and Application

机译:空气污染健康影响的案例交叉分析:方法和应用的系统综述

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摘要

Case-crossover is one of the most used designs for analyzing the health-related effects of air pollution. Nevertheless, no one has reviewed its application and methodology in this context. Objective: We conducted a systematic review of case-crossover (CCO) designs used to study the relationship between air pollution and morbidity and mortality, from the standpoint of methodology and application.Data sources and extraction: A search was made of the MEDLINE and EMBASE databases.Reports were classified as methodologic or applied. From the latter, the following information was extracted: author, study location, year, type of population (general or patients), dependent variable(s), independent variable(s), type of CCO design, and whether effect modification was analyzed for variables at the individual level. Data synthesis: The review covered 105 reports that fulfilled the inclusion criteria. Of these, 24 addressed methodological aspects, and the remainder involved the design’s application. In the methodological reports, the designs that yielded the best results in simulation were symmetric bidirectional CCO and time-stratified CCO. Furthermore, we observed an increase across time in the use of certain CCO designs, mainly symmetric bidirectional and time-stratified CCO. The dependent variables most frequently analyzed were those relating to hospital morbidity; the pollutants most often studied were those linked to particulate matter. Among the CCO-application reports, 13.6% studied effect modification for variables at the individual level.Conclusions: The use of CCO designs has undergone considerable growth; the most widely used designs were those that yielded better results in simulation studies: symmetric bidirectional and time-stratified CCO. However, the advantages of CCO as a method of analysis of variables at the individual level are put to little use
机译:案例交叉是分析空​​气污染对健康相关影响的最常用的设计之一。然而,在这种情况下,没有人审查过它的应用和方法。目的:我们从方法和应用的角度对案例交叉(CCO)设计进行了系统的研究,以研究空气污染与发病率和死亡率之间的关系。数据来源和提取:对MEDLINE和EMBASE进行了搜索报告被分类为方法论或应用报告。从后者中提取以下信息:作者,研究地点,年份,人群类型(一般或患者),因变量,自变量,CCO设计类型以及是否分析了效果修改个人层面的变量。数据综合:审查涵盖了符合纳入标准的105份报告。其中24个涉及方法论方面,其余涉及设计的应用程序。在方法学报告中,在模拟中产生最佳结果的设计是对称双向CCO和时间分层CCO。此外,我们观察到某些CCO设计(主要是对称双向和时间分层CCO)的使用随时间的增加。最经常分析的因变量是那些与医院发病率有关的变量。最经常研究的污染物是与颗粒物有关的污染物。在CCO的应用报告中,有13.6%的人研究了个体水平变量的效果修正。结论:CCO设计的使用已经有了很大的增长。最广泛使用的设计是在模拟研究中产生更好结果的设计:对称双向CCO和时间分层CCO。但是,很少使用CCO作为分析各个级别变量的方法的优势。

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