Hourly Air Pollution Exposure and Emergency Hospital Admissions for Stroke: A Multicenter Case-Crossover Study

医学 冲程(发动机) 条件logistic回归 急诊医学 空气污染 环境卫生 逻辑回归 人口 内科学 机械工程 化学 有机化学 工程类
作者
Xin Lv,Wanying Shi,Kun Yuan,Yangchang Zhang,Wangnan Cao,Chun-Rong Li,Lufei Xu,Lizhi Wu,Shengzhi Sun,Feng Hong
出处
期刊:Stroke [Lippincott Williams & Wilkins]
卷期号:54 (12): 3038-3045 被引量:2
标识
DOI:10.1161/strokeaha.123.044191
摘要

BACKGROUND: Daily exposure to ambient air pollution is associated with stroke morbidity and mortality; however, the association between hourly exposure to air pollutants and risk of emergency hospital admissions for stroke and its subtypes remains relatively unexplored. METHODS: We obtained hourly concentrations of fine particulate matter (PM 2.5 ), respirable particulate matter (PM 10 ), nitrogen dioxide (NO 2 ), sulfur dioxide (SO 2 ), ozone (O 3 ), and carbon monoxide (CO) from the China National Environmental Monitoring Center. We conducted a time-stratified case-crossover study among 86 635 emergency hospital admissions for stroke across 10 hospitals in 3 cities (Jinhua, Hangzhou, and Zhoushan) in Zhejiang province, China, between January 1, 2016 and December 31, 2021. Using a conditional logistic regression combined with a distributed lag linear model, we estimated the association between hourly exposure to multiple air pollutants and risk of emergency hospital admissions for total stroke, ischemic stroke, hemorrhagic stroke, and undetermined type. RESULTS: Hourly exposure to PM 2.5 , PM 10 , NO 2 , and SO 2 was associated with an increased risk of hospital admissions for total stroke and ischemic stroke. The associations were most pronounced during the concurrent hour of exposure and lasted for ≈2 hours. We found that the risk was more pronounced among male patients or those aged <65 years old. CONCLUSIONS: Our findings suggest that exposure to PM 2.5 , PM 10 , NO 2 , and SO 2 , but not CO and O 3 , is associated with emergency hospital admissions for total stroke or ischemic stroke shortly after exposure. Implementing targeted pollution emission reduction measures may have significant public health implications in controlling and reducing the burden of stroke.
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