Spatio-Temporal Mechanism Underlying the Effect of Urban Heat Island on Cardiovascular Diseases

Background: We explored the spatio-temporal characteristics of urban heat island (UHI) effect on cardiovascular diseases (CVDs). Methods: The land surface temperatures (LST) were retrieved from four Landsat remote-sensing images’ data, the temperature data from 95 meteorological stations, and an...

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Main Authors: ChunHuan HUANG, Xin DENG, Hailin YANG, Xinhui ZHOU, Qi JIA
Format: Article
Language:English
Published: Tehran University of Medical Sciences 2020-07-01
Series:Iranian Journal of Public Health
Subjects:
Online Access:https://ijph.tums.ac.ir/index.php/ijph/article/view/21122
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spelling doaj-22276fc2750e4b8caf38717295b1d9f62021-01-02T15:37:07ZengTehran University of Medical SciencesIranian Journal of Public Health2251-60852251-60932020-07-0149810.18502/ijph.v49i8.3889Spatio-Temporal Mechanism Underlying the Effect of Urban Heat Island on Cardiovascular DiseasesChunHuan HUANG0Xin DENG1Hailin YANG2Xinhui ZHOU3Qi JIA4College of Landscape Architecture, Nanjing Forestry University, Nanjing, ChinaCollege of Landscape Architecture, Nanjing Forestry University, Nanjing, ChinaCollege of Landscape Architecture, Nanjing Forestry University, Nanjing, ChinaCollege of Landscape Architecture, Nanjing Forestry University, Nanjing, ChinaCollege of Arts and Design, Zhengzhou University of Light Industry, Zhengzhou, China Background: We explored the spatio-temporal characteristics of urban heat island (UHI) effect on cardiovascular diseases (CVDs). Methods: The land surface temperatures (LST) were retrieved from four Landsat remote-sensing images’ data, the temperature data from 95 meteorological stations, and analysis data on CVDs mortality. Based on these data, landscape pattern indexes were used to analyze the pattern-process-function and the mechanism. Results: During 1984–2017, the effects of UHI on CVDs increased, thereby increased the mortality by 28.8%. The affected areas gradually expand from the central area of the city and undergo three evolution stages; the highly affected areas are mainly distributed in central and southern regions, and patches increase in number. The areas and ratio of high-level patches also show an upward tendency, increasing dominance in the overall landscape. Patches of the overall landscape become more complicated in shape, whereas those of high-level ones become less complicated. Concentration degree of the overall landscape decreases gradually with the types of landscapes patches increasing, reaching a rather even space distribution. Conclusion: Increased temperatures exacerbated by UHI lead to increased CVD mortality. As cities expand, the effects of UHI on CVDs increase in terms of both intensity and areas, with the overall landscape in uneven distribution, high-level affected areas in point distribution, and low-level ones in large-area concentration. https://ijph.tums.ac.ir/index.php/ijph/article/view/21122Urban heat island;Cardiovascular disease;Landscape pattern;Spatio-temporal characteristic
collection DOAJ
language English
format Article
sources DOAJ
author ChunHuan HUANG
Xin DENG
Hailin YANG
Xinhui ZHOU
Qi JIA
spellingShingle ChunHuan HUANG
Xin DENG
Hailin YANG
Xinhui ZHOU
Qi JIA
Spatio-Temporal Mechanism Underlying the Effect of Urban Heat Island on Cardiovascular Diseases
Iranian Journal of Public Health
Urban heat island;
Cardiovascular disease;
Landscape pattern;
Spatio-temporal characteristic
author_facet ChunHuan HUANG
Xin DENG
Hailin YANG
Xinhui ZHOU
Qi JIA
author_sort ChunHuan HUANG
title Spatio-Temporal Mechanism Underlying the Effect of Urban Heat Island on Cardiovascular Diseases
title_short Spatio-Temporal Mechanism Underlying the Effect of Urban Heat Island on Cardiovascular Diseases
title_full Spatio-Temporal Mechanism Underlying the Effect of Urban Heat Island on Cardiovascular Diseases
title_fullStr Spatio-Temporal Mechanism Underlying the Effect of Urban Heat Island on Cardiovascular Diseases
title_full_unstemmed Spatio-Temporal Mechanism Underlying the Effect of Urban Heat Island on Cardiovascular Diseases
title_sort spatio-temporal mechanism underlying the effect of urban heat island on cardiovascular diseases
publisher Tehran University of Medical Sciences
series Iranian Journal of Public Health
issn 2251-6085
2251-6093
publishDate 2020-07-01
description Background: We explored the spatio-temporal characteristics of urban heat island (UHI) effect on cardiovascular diseases (CVDs). Methods: The land surface temperatures (LST) were retrieved from four Landsat remote-sensing images’ data, the temperature data from 95 meteorological stations, and analysis data on CVDs mortality. Based on these data, landscape pattern indexes were used to analyze the pattern-process-function and the mechanism. Results: During 1984–2017, the effects of UHI on CVDs increased, thereby increased the mortality by 28.8%. The affected areas gradually expand from the central area of the city and undergo three evolution stages; the highly affected areas are mainly distributed in central and southern regions, and patches increase in number. The areas and ratio of high-level patches also show an upward tendency, increasing dominance in the overall landscape. Patches of the overall landscape become more complicated in shape, whereas those of high-level ones become less complicated. Concentration degree of the overall landscape decreases gradually with the types of landscapes patches increasing, reaching a rather even space distribution. Conclusion: Increased temperatures exacerbated by UHI lead to increased CVD mortality. As cities expand, the effects of UHI on CVDs increase in terms of both intensity and areas, with the overall landscape in uneven distribution, high-level affected areas in point distribution, and low-level ones in large-area concentration.
topic Urban heat island;
Cardiovascular disease;
Landscape pattern;
Spatio-temporal characteristic
url https://ijph.tums.ac.ir/index.php/ijph/article/view/21122
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AT xinhuizhou spatiotemporalmechanismunderlyingtheeffectofurbanheatislandoncardiovasculardiseases
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