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May 6, 2026Circulation0 citations

Abstract TU255: Spatiotemporal Restructuring of United States Atherosclerosis Mortality and the Emerging Distribution of Cardiometabolic Risk

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MFMinaam FarooqMUMuhammad Salik UddinAMAreesha Mansoor

Key Points

  • To investigate changes in atherosclerotic cardiovascular disease (ASCVD) mortality patterns during and after the pandemic.
  • Conducted a retrospective, county-level geospatial analysis of ASCVD mortality using CDC WONDER data.
  • Compared mortality patterns from 2014–2018 to those from 2019–2023 using crude mortality rates (CMR).
  • Examined risk factors (hypertension, diabetes, high cholesterol) with CDC PLACES data and used GeoDa for analysis.
  • U.S. atherosclerosis mortality restructured with larger high-risk clusters and rising CMR from 128.63 to 135.50.
  • Hotspots of mortality increased from 290 to 329 with stable coldspots reflecting intensification in established regions.
  • Diabetes was identified as the major driver of increased mortality, showing strong spatial overlap with mortality hotspots.

Abstract

Background: Geographic disparities in atherosclerotic cardiovascular disease (ASCVD) mortality are longstanding, yet the pandemic disrupted cardiometabolic care and population risk. Whether ASCVD mortality patterns reconfigured during this period and to what extent such changes reflect county-level cardiometabolic burden versus age structure remain unclear. Methods: A retrospective, county-level geospatial analysis of ASCVD mortality (ICD-10: I25.0, I25.1, I70) using CDC WONDER data, comparing pre-pandemic (2014–2018) and pandemic-era (2019–2023) epochs was conducted using crude mortality rates (CMR). Three risk factors, hypertension, diabetes, and high cholesterol were examined using CDC PLACES data. Analysed using GeoDa, univariate Getis-Ord Gi* (p<0.05) identified clusters, with bivariate Local Moran’s I evaluating spatial overlap between high-CMR clusters, risk factor prevalence, and median age to assess confounding. Results: Between 2014–2018 and 2019–2023, U.S. atherosclerosis mortality restructured toward larger, more contiguous high-risk clusters spanning the Lower Mississippi Delta, Black Belt, and central–southern Appalachia, extending into Oklahoma and north-central Texas. Hotspots increased from 290 to 329 with mean CMR rising from 128.63 to 135.50, while coldspots remained stable (434→432; 53.18→53.76), indicating intensification within established regions rather than a national rise. Low-risk zones persisted across the Upper Midwest, Northern Plains, Mountain West, and coastal New England and Pacific areas. Age confounding was limited: hotspot–coldspot median age shifted modestly (42.55 vs. 38.80 to 43.13 vs. 39.52), and major clusters extended beyond the oldest counties. Bivariate overlays showed the strongest, increasingly coherent spatial concordance between mortality hotspots and diabetes clusters, secondary alignment with hypertension, and fragmented overlap with high cholesterol, suggesting pandemic-era mortality intensification was driven chiefly by diabetes, supported by hypertension, beyond aging effects. Conclusion: U.S. atherosclerosis mortality geography has polarized, with widening divides between high- and low-risk regions. This reflects consolidation of the traditional Southeastern belt and emergence of a new mortality frontier in the South-Central U.S. The westward expansion appears closely linked to diabetes prevalence, marking a pivotal shift in the drivers of national cardiometabolic disparities.

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Farooq et al. (2026) studied this question.

synapsesocial.com/papers/69fa97ce04f884e66b531b2ehttps://doi.org/10.1161/cir.153.suppl_1.tu255
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