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Heat-Related Mortality Projections for Cardiovascular and Respiratory Disease Under the Changing Climate in Beijing, ChinaBecause heat-related health effects tend to become more serious at higher temperatures, there is an urgent need to determine the mortality projection of specific heat-sensitive diseases to provide more detailed information regarding the variation of the sensitivity of such diseases. In this study, the specific mortality of cardiovascular and respiratory disease in Beijing was initially projected under five different global-scale General Circulation Models (GCMs) and two Representative Concentration Pathways scenarios (RCPs) in the 2020s, 2050s, and 2080s compared to the 1980s. Multi-model ensembles indicated cardiovascular mortality could increase by an average percentage of 18.4 percent, 47.8 percent, and 69.0 percent in the 2020s, 2050s, and 2080s under RCP 4.5, respectively, and by 16.6 percent, 73.8 percent and 134 percent in different decades respectively, under RCP 8.5 compared to the baseline range. The same increasing pattern was also observed in respiratory mortality. The heat-related deaths under the RCP 8.5 scenario were found to reach a higher number and to increase more rapidly during the 21st century compared to the RCP4.5 scenario, especially in the 2050s and the 2080s. The projection results show potential trends in cause-specific mortality in the context of climate change, and provide support for public health interventions tailored to specific climate-related future health risks.
Document ID
20150022919
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
External Source(s)
Authors
Li, Tiantian
(Beijing Normal Univ. China)
Ban, Jie
(Chinese Center for Disease Control and Prevention Beijing, China)
Horton, Radley M.
(Columbia Univ. New York, NY, United States)
Bader, Daniel A.
(Columbia Univ. New York, NY, United States)
Huang, Ganlin
(Beijing Normal Univ. China)
Sun, Qinghua
(Chinese Center for Disease Control and Prevention Beijing, China)
Kinney, Patrick L.
(Columbia Univ. New York, NY, United States)
Date Acquired
December 11, 2015
Publication Date
August 6, 2015
Publication Information
Publication: Scientific Reports
Publisher: Nature Publishing Group
Volume: 5
Subject Category
Meteorology And Climatology
Aerospace Medicine
Report/Patent Number
GSFC-E-DAA-TN26069
Funding Number(s)
CONTRACT_GRANT: NNX14AB99A
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
health
mortality
diseases
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