滞后
环境科学
分布滞后
空气污染
环境卫生
风速
时滞
大气压力
呼吸系统
气温日变化
航程(航空)
污染
中国
大气污染
大气科学
气象学
医学
地理
统计
数学
生物
内科学
生态学
工程类
计算机网络
航空航天工程
地质学
计算机科学
考古
作者
Kangjun Wu,Xiaoqing Wu,Lei Hong
标识
DOI:10.1080/09603123.2022.2034757
摘要
The annual burden of severe acute respiratory infection (SARI) is enormous, and environmental factors may have a vital role in respiratory infections. This study aimed to investigate the potential effects of the atmospheric environment on SARI. A time-series analysis was performed on the relationship between atmospheric environment and 136,989 SARI cases by distributed lag non-linear model. Wind speed, PM10, PM2.5, O3, and CO exhibited differential effects at a range of lag times or exposure ranges. Air pressure, temperature, and diurnal temperature range showed risk effects in the full range. The lag effect of high pollution was stronger, appeared earlier, and lasted longer than that of low pollution. Most environmental factors had a certain non-linear lag relationship with SARI. Low wind speed and high air pollution may be increasing risk factors for SARI.
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