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Geospatial Modeling of Asthma Population in Relation to Air PollutionCurrent observations indicate that asthma is growing every year in the United States, specific reasons for this are not well understood. This study stems from an ongoing research effort to investigate the spatio-temporal behavior of asthma and its relatedness to air pollution. The association between environmental variables such as air quality and asthma related health issues over Mississippi State are investigated using Geographic Information Systems (GIS) tools and applications. Health data concerning asthma obtained from Mississippi State Department of Health (MSDH) for 9-year period of 2003-2011, and data of air pollutant concentrations (PM2.5) collected from USEPA web resources, and are analyzed geospatially to establish the impacts of air quality on human health specifically related to asthma. Disease mapping using geospatial techniques provides valuable insights into the spatial nature, variability, and association of asthma to air pollution. Asthma patient hospitalization data of Mississippi has been analyzed and mapped using quantitative Choropleth techniques in ArcGIS. Patients have been geocoded to their respective zip codes. Potential air pollutant sources of Interstate highways, Industries, and other land use data have been integrated in common geospatial platform to understand their adverse contribution on human health. Existing hospitals and emergency clinics are being injected into analysis to further understand their proximity and easy access to patient locations. At the current level of analysis and understanding, spatial distribution of Asthma is observed in the populations of Zip code regions in gulf coast, along the interstates of south, and in counties of Northeast Mississippi. It is also found that asthma is prevalent in most of the urban population. This GIS based project would be useful to make health risk assessment and provide information support to the administrators and decision makers for establishing satellite clinics in future.
Document ID
20140003116
Acquisition Source
Marshall Space Flight Center
Document Type
Presentation
Authors
Kethireddy, Swatantra R.
(Jackson State Univ. Jackson, MS, United States)
Tchounwou, Paul B.
(Jackson State Univ. Jackson, MS, United States)
Young, John H.
(Jackson State Univ. Jackson, MS, United States)
Luvall, Jeffrey C.
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Alhamdan, Mohammad
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Date Acquired
April 16, 2014
Publication Date
August 24, 2013
Subject Category
Environment Pollution
Geosciences (General)
Report/Patent Number
M13-2980
Report Number: M13-2980
Meeting Information
Meeting: International Conference on Medical Geology (MEDGEO 2013)
Location: Arlington, VA
Country: United States
Start Date: August 24, 2013
End Date: August 30, 2013
Sponsors: International Society for Photogrammetry and Remote Sensing
Distribution Limits
Public
Copyright
Public Use Permitted.
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