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Modeling travel impedance to medical care for children with birth defects using Geographic Information Systems
Eric M Delmelle1, Cynthia H Cassell, Coline Dony
1Department of Geography and Earth Sciences and Center for Applied GIScience, College of Liberal Arts and Sciences, University of North Carolina at Charlotte, Charlotte, North Carolina.
Insights
Children with spina bifida in rural Florida face nearly double the travel time to medical care compared to urban counterparts. Geographic Information Systems (GIS) highlight significant access barriers for these children.
Area of Science:
- Public Health
- Health Services Research
- Geographic Information Systems (GIS)
Background:
- Children with birth defects often encounter geographic barriers to accessing specialized medical services.
- Estimating travel time and distance is crucial for understanding these access challenges.
Purpose of the Study:
- To assess geographic disparities in accessing medical care for infants with spina bifida in Florida.
- To utilize Geographic Information Systems (GIS) to analyze travel times and identify access barriers.
Main Methods:
- A topological road network of Florida was created using 2007 road data.
- Infants with spina bifida (1998-2007) were identified via the Florida Birth Defects Registry and linked to hospital records.
- Maternal residence and hospitalization locations were geocoded to calculate travel times.
Main Results:
- Infants with spina bifida in rural Florida experienced nearly twice the travel time to care compared to those in urban areas.
- Analysis revealed statistically significant spatial autocorrelation in travel times at the county level.
- Certain county clusters showed substantially greater travel times for families.
Conclusions:
- Linking birth defects registry and hospital discharge data effectively reveals geographic differences in healthcare access.
- GIS methods are valuable for evaluating accessibility and geographic barriers for children with special healthcare needs, including those with birth defects.
Background:
Children with birth defects may face significant geographic barriers accessing medical care and specialized services. Using a Geographic Information Systems-based approach, one-way travel time and distance to access medical care for children born with spina bifida was estimated.
Methods:
Using 2007 road information from the Florida Department of Transportation, we built a topological network of Florida roads. Live-born Florida infants with spina bifida during 1998 to 2007 were identified by the Florida Birth Defects Registry and linked to hospital discharge records. Maternal residence at delivery and hospitalization locations were identified during the first year of life.
Results:
Of 668 infants with spina bifida, 8.1% (n = 54) could not be linked to inpatient data, resulting in 614 infants. Of those 614 infants, 99.7% (n = 612) of the maternal residential addresses at delivery were successfully geocoded. Infants with spina bifida living in rural areas in Florida experienced travel times almost twice as high compared with those living in urban areas. When aggregated at county levels, one-way network travel times exhibited statistically significant spatial autocorrelation, indicating that families living in some clusters of counties experienced substantially greater travel times compared with families living in other areas of Florida.
Conclusion:
This analysis demonstrates the usefulness of linking birth defects registry and hospital discharge data to examine geographic differences in access to medical care. Geographic Information Systems methods are important in evaluating accessibility and geographic barriers to care and could be used among children with special health care needs, including children with birth defects.
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