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Introduction to the Use of Geographic Information Systems in Public Health

Introduction to the Use of Geographic Information Systems in Public Health. Elio Spinello, MPH California State University, Northridge. Readings. Abstracts – 1st Annual International Health Geographics Conference – Infectious Diseases

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Introduction to the Use of Geographic Information Systems in Public Health

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  1. Introduction to the Use of Geographic Information Systems in Public Health Elio Spinello, MPH California State University, Northridge

  2. Readings • Abstracts – 1st Annual International Health Geographics Conference – Infectious Diseases • Geographic Information Systems and Public Health: Mapping the Future Public Health Rep 1999; 114: 359-373 July / August, 1999

  3. Learning Objectives • Develop awareness of the basic capabilities of Geographic Information Systems in Public Health • Understand basic concepts associated with GIS software • Understand specific ways in which GIS can be used in Public Health

  4. Learning Objectives • Develop familiarity with terminology related to GIS • Understand issues related to privacy and confidentiality of records using in GIS software and maps which are produced by GIS software

  5. Performance Objectives • Determine whether a particular study would benefit from GIS as a tool. • Determine the need for a data security method to be applied to a published map created with GIS software.

  6. GIS Terminology • Geocoding • Append latitude and longitude to an address • Centroid • Center of a region • Layer • One type of geography on a map

  7. GIS Terminology • Features • Anything on a map • Attributes • Characteristics of features • Thematic mapping • Visualization of feature attributes

  8. GIS Concepts • Types of geography • Regions (polygons) • Points • Lines

  9. Example of a Theme Map

  10. GIS Terminology • Projections. • Compensate for curvature of the earth.

  11. Types of Graphic Images • Raster • Made up of pixels • No relationship between elements • Vector • Points connected by lines

  12. Data Requirements for Use of GIS Software • Data must be organized geographically • Records must include addresses or, • Records must include the region the point is located in (such as a zip code, census tract, etc.)

  13. Types of Applications in Public Health • Analytical • Reporting • Data transformation • Spatial Database Queries

  14. Examples of Spatial Database Queries • Identifying and locating disease clusters • Locating target populations • Identifying and locating community resources useful for intervention programs

  15. What Types of Studies Can Benefit From a GIS? • Calculation and visualization of morbidity and mortality rates for regions • Calculation of distance variables for statistical testing

  16. What Types of Studies Can Benefit From a GIS? • Data visualization from a spatial perspective • Identifying geographic patterns • Risk communication • Communicating geographically related risks

  17. What Types of Studies Can Benefit From a GIS? • Disease cluster analysis • Locating larger than expected incidences of a disease related by time and place

  18. Analytical Barriers to Cluster Analysis • Imprecise measure of time • Imprecise measure of place • Incomplete clinical data

  19. Disease Cluster Analysis • For there to be causation, the risk must: • Be in geographical proximity to the case, and… • Pre-date the disease

  20. Privacy and Confidentiality Issues • Problem: maps may contain sufficient detail so that individual cases can be identified. • Primarily an issue when maps are released to the public or included in published work.

  21. Methods to Protect Confidentiality • Introduction of Error • Points are randomly dispersed • Limitation of Detail • Detailed layers, such as streets are not displayed with points.

  22. Methods to Protect Confidentiality • Suppression of records • Records which meet very limited criteria and are few in numbers are not shown or disguised • Large Symbols

  23. Example of Large Symbol Method

  24. Methods to Protect Confidentiality • Convert points into attributes. • Rather than display points, the points are aggregated to regions and the regions are themed by color based on the the number of points they contain.

  25. Commonly Used GIS Programs • Atlas GIS (ESRI) • ArcView GIS (ESRI) • ArcInfo GIS (ESRI) • MapInfo (MapInfo)

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