How I Do It: Counseling Patients About Outdoor Exercise During Air Pollution Events.

Glick, Matthew; Bosma, Chris; Monoson, Alexys; Callahan, Sean; Huang, Yuh-Chin T; Balakrishnan, Bathmapriya · Chest · 2026

other · Level V

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Abstract

Poor outdoor air quality episodes-driven by wildfire smoke, traffic-related emissions, and unfavorable atmospheric conditions-are increasingly common, and patients routinely ask whether and how to continue exercising outdoors. The health benefits of regular physical activity are well established, yet exposure to fine particulate matter (PM<sub>2</sub>.<sub>5</sub>) and ozone (O<sub>3</sub>) is associated with adverse cardiopulmonary outcomes; during exercise, increased minute ventilation increases inhaled dose, sharpening the clinical counseling dilemma. Existing recommendations from public health and professional organizations largely provide population-level messaging and are not optimized for rapid, individualized decisions in routine outpatient care. In this How I Do It article, we translate epidemiologic, experimental, and guideline-based evidence into a pragmatic counseling approach anchored to the U.S. Air Quality Index (AQI). We present a four-step framework: (1) stratify patients by cardiopulmonary vulnerability; (2) interpret local, real-time, pollutant-specific air quality data; (3) apply AQI-based action thresholds tailored to risk tier; and (4) prescribe specific, operational modifications to exercise timing, location/route, intensity, and duration, with mitigation strategies when exposure cannot be avoided. This framework emphasizes dose reduction and modification rather than blanket cessation, explicitly acknowledges heterogeneity in individual susceptibility and access to mitigation resources, and supports shared decision-making at the point of care. By integrating air quality awareness into routine exercise counseling, clinicians can deliver clear, equitable, and clinically actionable guidance that helps patients remain active while minimizing avoidable exposure during pollution events.