Ecological model analysis of respiratory health risk factors by ambient air pollution in Lucknow, the capital City of Uttar Pradesh, India

被引:0
|
作者
Ganesh Yadav
R. B. Singh
Subhash Anand
B. W. Pandey
Ashutosh Mohanty
Sushree Sangita Dash
机构
[1] University of Delhi,Department of Geography, Delhi School of Economics
[2] International Geographical Union (IGU),Faculty of Science and Technology
[3] Madhyanchal Professional University,School of Water Resources
[4] Indian Institute of Technology,undefined
来源
GeoJournal | 2022年 / 87卷
关键词
Ecological models; Respiratory health risk; Urban health; Urban environment;
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学科分类号
摘要
Ambient air pollution, particularly in the urban environment of developing countries, has turned out to be a major health risk factor. We explore the compounded impact of age sensitivity, exposure, poverty, co-morbidity, etc., along with composite air pollution in determining morbidity and health burden of people in Lucknow, India. This cross-sectional study is confined to analyse respiratory health status across different socio-economic and geographic locations using n = 140 in-depth questionnaire method. We used mean daily ambient air pollution data of PM10, PM2.5, SO2, and NO2 for the 2008–2018 period. We used the ecological model framework to assess the risk at different hierarchical levels and compounded severity on a spatial scale. We also used Logistic regression model with log odds and odds ratio to analyze the association of risks outcomes with composite air pollution scores calculated using the principal component analysis method. There is a strong association of location-specific respiratory disease prevalence with an overall 32 percent prevalence. The prevalence of ecological model 1 (individual domain) is 4.3 percent, while ecological model 2 (community domain) has the highest prevalence at 32.4 percent. The logistic regression model shows that respiratory disease load is positively associated with age sensitivity (P < .001) and composite pollution level (P < .001). For another model with suffocation as the outcome variable, composite pollution level (P < .001) and exposure (P < .001) are positively associated. Optimum interventions are required at Ecological models 1, 2, and 3 levels for better respiratory health outcomes.
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页码:469 / 483
页数:14
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