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Associations of fine particulate matter and constituents with pediatric emergency room visits for respiratory diseases in Shanghai, China

四分位间距 医学 呼吸系统 哮喘 支气管炎 肺炎 呼吸道 呼吸道感染 儿科 环境卫生 内科学
作者
Yihan Wu,Tingting Jin,Wen He,Lijuan Liu,Hongjin Li,Cong Liu,Yufeng Zhou,Jianguo Hong,Lanfang Cao,Yanming Lu,Xiaoyan Dong,Min Xia,Bo Ding,Liling Qian,Libo Wang,Wenhao Zhou,Yonghao Gui,Xiaobo Zhang,Renjie Chen
出处
期刊:International Journal of Hygiene and Environmental Health [Elsevier]
卷期号:236: 113805-113805 被引量:16
标识
DOI:10.1016/j.ijheh.2021.113805
摘要

Although ambient fine particulate matter (PM2.5) has been associated with adverse respiratory outcomes in children, few studies have examined PM2.5 constituents with respiratory diseases in children in China. To investigate the associations of short-term exposure to PM2.5 and its constituents with pediatric emergency room visits (ERVs) for respiratory diseases in Shanghai, China. We collected daily concentrations of PM2.5 and its constituents in urban Shanghai from January 1, 2016, to December 31, 2018. Daily pediatric ERVs for four major respiratory diseases, including upper respiratory tract infection, bronchitis, pneumonia, and asthma, were obtained from 66 hospitals in Shanghai during the same period. Associations of exposure to daily PM2.5 and constituents with respiratory ERVs were estimated using the over-dispersed generalized additive models. Short-term exposure to PM2.5 and its constituents were associated with increased pediatric ERVs for respiratory diseases. Specifically, an interquartile range increase in the 3-day average PM2.5 level (31 μg/m3) was associated with 1.86% (95%CI: 0.52, 3.22), 1.53% (95%CI: 0.01, 3.08), 1.90% (95%CI: 0.30, 3.52), and 2.67% (95%CI: 0.70, 4.68) increase of upper respiratory tract infection, bronchitis, pneumonia, and asthma ERVs, respectively. As for PM2.5 constituents, we found organic carbon, ammonium, nitrate, selenium, and zinc were associated with higher risk of respiratory ERVs in the single constituent and the constituent-PM2.5 models. Short-term exposure to PM2.5 was associated with increased pediatric ERVs for respiratory diseases. Constituents related to anthropogenic combustion and traffic might be the dominant contributors of the observed associations.
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