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May 13, 2026Journal of Urban Health0 citationsOpen Access

Spatial Patterns of Opioid Overdose Mortality Risk Across Urban, Transitional, and Rural Communities Using Satellite-Derived and Socioeconomic Indicators

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GBGia Barboza‐SalernoTHTaylor Harrington

Key Points

  • This research examines the impact of environmental and structural factors on opioid overdose mortality across different community types.
  • Retrospective ecological study conducted in Cook County, Illinois, from 2018 to 2023
  • Utilized remote sensing data to classify urbanicity and measure built-up intensity and vegetative greenness
  • Employed a Bayesian spatiotemporal model to estimate neighborhood-level overdose risk
  • Opioid overdose risk exhibited significant spatial clustering linked to environmental factors
  • Neighborhood disadvantage was associated with over seven times the fatal overdose risk in the most deprived areas
  • Increasing overdose trends were observed in rural and transitional zones despite higher risks in urban areas

Abstract

Geographic differences in drug overdose patterns across the rural-urban continuum are well documented. Few studies utilize remote sensing data to assess environmental and structural factors influencing overdose risk across different geographic scales. We performed a retrospective ecological study analyzing fatal opioid overdoses within census block groups in Cook County, Illinois, from 2018 to 2023. Urbanicity was classified using the Global Human Settlement Layer Model (GHSL-MOD), which employed satellite data to measure built-up intensity, vegetative greenness, and nighttime light intensity (NLI). Environmental indicators were combined with census-based measures of neighborhood deprivation to characterize spatial variation in physical and social conditions. A Bayesian spatiotemporal model was estimated to account for spatial dependence, temporal trends, and environmental exposures, yielding neighborhood-level estimates of overdose risk. Overdose risk exhibited significant spatial clustering and strong associations with both social and environmental factors. Neighborhood disadvantage had a dose-response relationship, with fatal overdose risk in areas with the most deprivation, experiencing over seven times the risk, compared to the least deprived. NLI was strongly associated with increased overdose risk, while vegetative greenness and park access showed no significant protective effects. Increasing trends were detected in rural and transitional zones despite a higher risk in urban centers. Demographic characteristics of overdose victims varied across the county, suggesting potential geographic disparities in risk. The physical and social features of neighborhoods underscore the need for early surveillance and intervention within and outside urban centers. These factors should be incorporated into targeted, place-based strategies to lower opioid-related deaths.

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Cite This Study

Barboza‐Salerno et al. (2026) studied this question.

synapsesocial.com/papers/6a03cb9d1c527af8f1ecf610https://doi.org/10.1007/s11524-026-01081-3
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