TY - JOUR
T1 - Associations between non-optimum temperatures and cardiovascular hospital admissions and effect modification by ambient particulate air pollution
T2 - a two-stage time-series study in China
AU - Liu, Huimeng
AU - Lei, Jian
AU - Jiang, Yunxing
AU - Bai, Lijun
AU - Wang, Kai
AU - Yang, Chenlu
AU - Li, Ge
AU - Chen, Juan
AU - Lan, Yang
AU - Xia, Xi
AU - Wang, Jinxi
AU - Wei, Chen
AU - Li, Yinxiang
AU - Liu, Yuewei
AU - Wei, Jing
AU - Sun, Shengzhi
AU - Deng, Furong
AU - Guo, Xinbiao
AU - Chen, Xi
AU - Wu, Shaowei
N1 - Publisher Copyright:
© 2026 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license. http://creativecommons.org/licenses/by-nc-nd/4.0/
PY - 2026/3
Y1 - 2026/3
N2 - BackgroundIt remains unclear whether non-optimum temperatures are associated with hospital admissions for subtypes of cardiovascular events, and how PM2.5 and black carbon (BC) modify these associations.MethodsHospital admission data of major cardiovascular events were obtained from two major national health insurance systems across 270 cities of prefecture-level or above in China during 2013–2017. A two-stage time-series study was conducted using a generalized additive model with a quasi-Poisson family, combined with a distributed lag nonlinear regression model, to explore the exposure-response associations of non-optimum temperatures with hospital admissions. Effect modification was investigated by stratifying ambient particulate air pollution levels into quartile groups.FindingsIn a total of 24,564,921 hospital admission records for major cardiovascular events, compared with the minimum morbidity temperature (18.3 °C), the relative risks (RRs) of hospital admissions for total major cardiovascular events associated with extreme cold temperature (−3.1 °C, 2.5th percentile) and extreme hot temperature (27.9 °C, 97.5th percentile) were 1.69 [95% confidence interval (CI): 1.46–1.96] and 1.27 (95% CI: 1.15–1.41), respectively. Such temperature-hospital admission associations were amplified at high BC levels, especially under extreme hot temperature, with RR increased from 1.14 (95% CI: 1.02–1.28) in the first quartile to 1.53 (95% CI: 1.31–1.78) in the fourth quartile group of BC levels.InterpretationOur study suggests that both extreme cold and hot temperatures contribute to elevated hospital admission risks for major cardiovascular events, with high BC levels further exacerbating the risks associated with extreme hot temperature.FundingNational Science Fund for Distinguished Young Scholars of China (grant number 82525058), National Natural Science Foundation of China (grant number 82203991), and Youth Top Talent Program of Xi'an Jiaotong University.
AB - BackgroundIt remains unclear whether non-optimum temperatures are associated with hospital admissions for subtypes of cardiovascular events, and how PM2.5 and black carbon (BC) modify these associations.MethodsHospital admission data of major cardiovascular events were obtained from two major national health insurance systems across 270 cities of prefecture-level or above in China during 2013–2017. A two-stage time-series study was conducted using a generalized additive model with a quasi-Poisson family, combined with a distributed lag nonlinear regression model, to explore the exposure-response associations of non-optimum temperatures with hospital admissions. Effect modification was investigated by stratifying ambient particulate air pollution levels into quartile groups.FindingsIn a total of 24,564,921 hospital admission records for major cardiovascular events, compared with the minimum morbidity temperature (18.3 °C), the relative risks (RRs) of hospital admissions for total major cardiovascular events associated with extreme cold temperature (−3.1 °C, 2.5th percentile) and extreme hot temperature (27.9 °C, 97.5th percentile) were 1.69 [95% confidence interval (CI): 1.46–1.96] and 1.27 (95% CI: 1.15–1.41), respectively. Such temperature-hospital admission associations were amplified at high BC levels, especially under extreme hot temperature, with RR increased from 1.14 (95% CI: 1.02–1.28) in the first quartile to 1.53 (95% CI: 1.31–1.78) in the fourth quartile group of BC levels.InterpretationOur study suggests that both extreme cold and hot temperatures contribute to elevated hospital admission risks for major cardiovascular events, with high BC levels further exacerbating the risks associated with extreme hot temperature.FundingNational Science Fund for Distinguished Young Scholars of China (grant number 82525058), National Natural Science Foundation of China (grant number 82203991), and Youth Top Talent Program of Xi'an Jiaotong University.
KW - Ambient particulate air pollution
KW - Cardiovascular events
KW - Temperature
KW - Time-series study
UR - https://www.scopus.com/pages/publications/105034641757
U2 - 10.1016/j.lanwpc.2026.101829
DO - 10.1016/j.lanwpc.2026.101829
M3 - 文章
AN - SCOPUS:105034641757
SN - 2666-6065
VL - 68
JO - The Lancet Regional Health - Western Pacific
JF - The Lancet Regional Health - Western Pacific
M1 - 101829
ER -