EventsThe 4th International Electronic Conference on Environmental Research and Public Health — Climate Change and Health in a Broad Perspective
Published
with-doi10.3390/ECERPH-4-13116 (registering DOI)
This submission belongs to the session B. Occupational Health and Temperature Change of the event The 4th International Electronic Conference on Environmental Research and Public Health — Climate Change and Health in a Broad Perspective
Published date
31 Oct, 2022
Academic Editor
author-avatarJon Ø. Odland
Citation
Li Yonghong, Yibin Cheng, Xiaoyuan Yao, Association of Heat Exposure and Emergency Ambulance Calls: A Multi-city Study, in Proceedings of The 4th International Electronic Conference on Environmental Research and Public Health — Climate Change and Health in a Broad Perspective, 15 October–30 October 2022, MDPI: Basel, Switzerland, doi: 10.3390/ECERPH-4-13116
Share
Email
Facebook
Twitter
LinkedIn

Association of Heat Exposure and Emergency Ambulance Calls: A Multi-city Study

image
1. China CDC Key Laboratory of Environment and Population Health, National Institute of Environmental Health, Chinese Center for Disease Control and Prevention, China
2. China CDC Key Laboratory of Environment and Population Health, National Institute of Environmental Health, Chinese Center for Disease Control and Prevention
Abstract

Background Evidence of the impacts of ambient temperatures on emergency ambulance calls (EACs) in developing countries is rare. This study aimed to examine the impacts and burden of heat on EACs in China, quantify the contributions of regional modifiers and identify the vulnerable populations.

Methods A semi-parametric generalized additive model with a Poisson distribution was used to analyze the city-specific impacts of the daily maximum temperature (Tmax) on EACs during June to August in 2014-2017. Stratified analyses by sex and age were performed to identify vulnerable sub-populations. Meta-analysis was undertaken to illustrate the pooled associations. Further subgroup analysis stratified by climate, latitude and per capita disposable income (PCDI) and meta-regression analysis were conducted to explore the regional heterogeneity and quantify the contributions of possible modifiers. City- and region-specific attributable fractions (AF) of EACs attributable to heat were calculated.

Results Strong associations between daily Tmax and total EACs were observed in all cities. 11.7% (95% CI: 11.2%–12.3%) of EACs were attributed to high temperature in the ten Chinese cities, and the central region with lower PCDI had the highest AF of 17.8% (95% CI: 17.2%–18.4%). People living in the central region with lower PCDI, the people aged 18-44 years and 0-6years were identified to be more vulnerable to heat than others. The combined effects of PCDI, temperature and latitude contributed 88.56% to the regional heterogeneity.

Conclusions Our results complement the understanding of the burden of EACs attributable to heat in developing countries and the quantitative contribution of regional modifiers.

Keywords
Attributable fraction
Emergency ambulance calls
High temperature
Regional modifiers
Risk assessment
Manuscript
Air pollution Derivatives Linked to Changes in Urban Mobility Patterns during COVID-19: the Cartagena Case Study