The Economic Consequence of Increased Healthcare Resource Utilization in Maryland Associated with a Major Wildfire Smoke Event.
retrospective_cohort · Level III
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- Record sourced from PubMed, PMID 41887282.
- Also identified by DOI 10.1016/j.chest.2026.01.034.
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Abstract
Transcontinental wildfire smoke migration originating from remote areas resulted in consecutive days of high concentrations of particulate matter (PM<sub>2.5</sub>) in Maryland in June 2023. What is the economic and cardiopulmonary effects of migrating wildfire smoke exposure during June 2023 in Maryland? Using electronic health record data from the University of Maryland Medical System (UMMS), we identified cardiopulmonary clinical encounters. We developed two regression models (combining a logistic regression and a generalized linear model [GLM] with a gamma distribution and log link) and a non-parametric bootstrapping to estimate the incremental cost of cardiopulmonary encounters during 6 days defined by unhealthy PM<sub>2.5</sub> concentration (hotspot days) in June 2023 in Maryland relative to calendar-matched control days in 2018 and 2019. We also provided 10-year cost projections under different future wildfire scenarios and modeled the preventable burden using respirators. The final sample included 5,273 cardiopulmonary encounters. The total cost accrued by increased cardiopulmonary encounters during the 6-hotspot day exposure compared to control days was $2,435,513 (95% uncertainty interval [UI]: $62,452-$5,266,838). Under the 'Expected' Scenario (2 wildfires in 10 years), the projected incremental cost of wildfire smoke-related cardiopulmonary encounters was $6,379,406 (95% UI: $122,412 - $13,837,150). However, modeling the use of respirators with 50%, 75%, and 95% effectiveness by high-risk individuals was associated with an expected net cost saving of $758,274, $1,162,649, and $1,486,150, respectively. We showed that a major medical system in Maryland experienced substantial healthcare economic burden over 6 days that were characterized by increased wildfire smoke. Since Maryland uses a fixed global budget system, our findings have implications for preventive strategies that mitigate economic burden incurred in the context of wildfire smoke events.