Spatial and Temporal Trends of Number of Deaths Attributable to Ambient PM2.5 in the Korea
We aimed to evaluate the spatial and temporal trends of the health burden attributable to particulate matter less than 2.5 µm in diameter (PM2.5) in the metropolitan cities and provinces of the Korea.BACKGROUNDWe aimed to evaluate the spatial and temporal trends of the health burden attributable to...
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Published in | Journal of Korean medical science Vol. 33; no. 30; pp. e193 - 14 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
The Korean Academy of Medical Sciences
23.07.2018
대한의학회 |
Subjects | |
Online Access | Get full text |
ISSN | 1598-6357 1011-8934 1598-6357 |
DOI | 10.3346/jkms.2018.33.e193 |
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Abstract | We aimed to evaluate the spatial and temporal trends of the health burden attributable to particulate matter less than 2.5 µm in diameter (PM2.5) in the metropolitan cities and provinces of the Korea.BACKGROUNDWe aimed to evaluate the spatial and temporal trends of the health burden attributable to particulate matter less than 2.5 µm in diameter (PM2.5) in the metropolitan cities and provinces of the Korea.We used modeled PM2.5 concentration data for the basic administrative levels, comprising the cities and the provinces of Korea, the corresponding annual population census data for each level, and the age and cause specific mortality data. We applied cause-specific integrated exposure-response functions to calculate the premature mortality attributable to ambient PM2.5 for four disease end points (ischemic heart disease [IHD], chronic obstructive pulmonary disease [COPD], lung cancer [LC], and cerebrovascular disease [stroke]) for the year 2015. Moreover, the temporal trends of the health burden from 2006 to 2015 were assessed.METHODSWe used modeled PM2.5 concentration data for the basic administrative levels, comprising the cities and the provinces of Korea, the corresponding annual population census data for each level, and the age and cause specific mortality data. We applied cause-specific integrated exposure-response functions to calculate the premature mortality attributable to ambient PM2.5 for four disease end points (ischemic heart disease [IHD], chronic obstructive pulmonary disease [COPD], lung cancer [LC], and cerebrovascular disease [stroke]) for the year 2015. Moreover, the temporal trends of the health burden from 2006 to 2015 were assessed.The annual average PM2.5 concentration for Korea was 24.4 μg/m3, and 11,924 premature deaths were attributable to PM2.5 exposure in 2015. By simulating the reduction in the annual mean values of PM2.5 to 10 µg/m3, about 8,539 premature deaths were preventable. There was spatial variation in mortality burden attributable to PM2.5 across the sub-national regions of Korea. In particular, the high burden was concentrated at Seoul and Gyeonggi province due to the high population density. However, decreasing trends were noted for most of the metropolitan cities and provinces of Korea since 2006.RESULTSThe annual average PM2.5 concentration for Korea was 24.4 μg/m3, and 11,924 premature deaths were attributable to PM2.5 exposure in 2015. By simulating the reduction in the annual mean values of PM2.5 to 10 µg/m3, about 8,539 premature deaths were preventable. There was spatial variation in mortality burden attributable to PM2.5 across the sub-national regions of Korea. In particular, the high burden was concentrated at Seoul and Gyeonggi province due to the high population density. However, decreasing trends were noted for most of the metropolitan cities and provinces of Korea since 2006.Our findings show that further actions to improve air quality in Korea would substantially improve the health burden due to particulate matter.CONCLUSIONOur findings show that further actions to improve air quality in Korea would substantially improve the health burden due to particulate matter. |
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AbstractList | We aimed to evaluate the spatial and temporal trends of the health burden attributable to particulate matter less than 2.5 µm in diameter (PM2.5) in the metropolitan cities and provinces of the Korea.BACKGROUNDWe aimed to evaluate the spatial and temporal trends of the health burden attributable to particulate matter less than 2.5 µm in diameter (PM2.5) in the metropolitan cities and provinces of the Korea.We used modeled PM2.5 concentration data for the basic administrative levels, comprising the cities and the provinces of Korea, the corresponding annual population census data for each level, and the age and cause specific mortality data. We applied cause-specific integrated exposure-response functions to calculate the premature mortality attributable to ambient PM2.5 for four disease end points (ischemic heart disease [IHD], chronic obstructive pulmonary disease [COPD], lung cancer [LC], and cerebrovascular disease [stroke]) for the year 2015. Moreover, the temporal trends of the health burden from 2006 to 2015 were assessed.METHODSWe used modeled PM2.5 concentration data for the basic administrative levels, comprising the cities and the provinces of Korea, the corresponding annual population census data for each level, and the age and cause specific mortality data. We applied cause-specific integrated exposure-response functions to calculate the premature mortality attributable to ambient PM2.5 for four disease end points (ischemic heart disease [IHD], chronic obstructive pulmonary disease [COPD], lung cancer [LC], and cerebrovascular disease [stroke]) for the year 2015. Moreover, the temporal trends of the health burden from 2006 to 2015 were assessed.The annual average PM2.5 concentration for Korea was 24.4 μg/m3, and 11,924 premature deaths were attributable to PM2.5 exposure in 2015. By simulating the reduction in the annual mean values of PM2.5 to 10 µg/m3, about 8,539 premature deaths were preventable. There was spatial variation in mortality burden attributable to PM2.5 across the sub-national regions of Korea. In particular, the high burden was concentrated at Seoul and Gyeonggi province due to the high population density. However, decreasing trends were noted for most of the metropolitan cities and provinces of Korea since 2006.RESULTSThe annual average PM2.5 concentration for Korea was 24.4 μg/m3, and 11,924 premature deaths were attributable to PM2.5 exposure in 2015. By simulating the reduction in the annual mean values of PM2.5 to 10 µg/m3, about 8,539 premature deaths were preventable. There was spatial variation in mortality burden attributable to PM2.5 across the sub-national regions of Korea. In particular, the high burden was concentrated at Seoul and Gyeonggi province due to the high population density. However, decreasing trends were noted for most of the metropolitan cities and provinces of Korea since 2006.Our findings show that further actions to improve air quality in Korea would substantially improve the health burden due to particulate matter.CONCLUSIONOur findings show that further actions to improve air quality in Korea would substantially improve the health burden due to particulate matter. Background: We aimed to evaluate the spatial and temporal trends of the health burden attributable to particulate matter less than 2.5 µm in diameter (PM2.5) in the metropolitan cities and provinces of the Korea. Methods: We used modeled PM2.5 concentration data for the basic administrative levels, comprising the cities and the provinces of Korea, the corresponding annual population census data for each level, and the age and cause specific mortality data. We applied cause- specific integrated exposure-response functions to calculate the premature mortality attributable to ambient PM2.5 for four disease end points (ischemic heart disease [IHD], chronic obstructive pulmonary disease [COPD], lung cancer [LC], and cerebrovascular disease [stroke]) for the year 2015. Moreover, the temporal trends of the health burden from 2006 to 2015 were assessed. Results: The annual average PM2.5 concentration for Korea was 24.4 μg/m3 , and 11,924 premature deaths were attributable to PM2.5 exposure in 2015. By simulating the reduction in the annual mean values of PM2.5 to 10 µg/m3 , about 8,539 premature deaths were preventable. There was spatial variation in mortality burden attributable to PM2.5 across the sub-national regions of Korea. In particular, the high burden was concentrated at Seoul and Gyeonggi province due to the high population density. However, decreasing trends were noted for most of the metropolitan cities and provinces of Korea since 2006. Conclusion: Our findings show that further actions to improve air quality in Korea would substantially improve the health burden due to particulate matter. KCI Citation Count: 1 |
Author | Bae, Hyun-Joo Lim, Youn-Hee Han, Changwoo Hong, Yun-Chul Kim, Soontae |
AuthorAffiliation | 3 Institute of Environmental Medicine, Seoul National University Medical Research Center, Seoul, Korea 2 Department of Environmental and Safety Engineering, Ajou University, Suwon, Korea 1 Department of Preventive Medicine, Seoul National University College of Medicine, Seoul, Korea 5 Korea Environmental Institute, Seoul, Korea 4 Environmental Health Center, Seoul National University College of Medicine, Seoul, Korea |
AuthorAffiliation_xml | – name: 1 Department of Preventive Medicine, Seoul National University College of Medicine, Seoul, Korea – name: 3 Institute of Environmental Medicine, Seoul National University Medical Research Center, Seoul, Korea – name: 4 Environmental Health Center, Seoul National University College of Medicine, Seoul, Korea – name: 5 Korea Environmental Institute, Seoul, Korea – name: 2 Department of Environmental and Safety Engineering, Ajou University, Suwon, Korea |
Author_xml | – sequence: 1 givenname: Changwoo surname: Han fullname: Han, Changwoo – sequence: 2 givenname: Soontae surname: Kim fullname: Kim, Soontae – sequence: 3 givenname: Youn-Hee surname: Lim fullname: Lim, Youn-Hee – sequence: 4 givenname: Hyun-Joo surname: Bae fullname: Bae, Hyun-Joo – sequence: 5 givenname: Yun-Chul surname: Hong fullname: Hong, Yun-Chul |
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Title | Spatial and Temporal Trends of Number of Deaths Attributable to Ambient PM2.5 in the Korea |
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