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The Athlete's ECG: Sport-Specific Patterns, Physiological Remodeling, and Clinical Interpretation.

Ferrari F, Tso JV, Shadid G, Stein R, Froelicher V. ยท JACC. Advances ยท 2026

This review looks at how heart-rhythm (ECG) readings change in athletes as the heart adapts to training, and how those patterns differ by sport type. It reports that endurance athletes commonly show a slow resting heart rate, early repolarization and high QRS voltages from volume loading, strength athletes show pressure-overload signs like high QRS voltages with relatively higher resting heart rates, and mixed-sport athletes fall in between; most findings are benign, but T-wave inversion in lateral, inferolateral or anterolateral leads needs further workup.
Takeaway: Have any abnormal ECG finding, especially lateral T-wave inversion, assessed by a clinician using athlete-specific criteria rather than assuming it's just training adaptation.
Abstract (source)

Regular intensive training induces structural, functional, and electrical cardiac adaptations collectively known as the athlete's heart. Many electrocardiogram (ECG)

Findings: in athletes, including sinus bradycardia, early repolarization, and increased QRS voltages, reflect benign physiological adaptation. However, some patterns overlap with features of cardiomyopathy and may pose diagnostic challenges. This state-of-the-art review examines sport-specific ECG patterns and how different training modalities influence cardiac electrical remodeling and its clinical interpretation. Endurance athletes typically exhibit changes related to chronic volume loading, such as sinus bradycardia, early repolarization, and high QRS voltages. Strength athletes more often demonstrate ECG features consistent with pressure overload, including increased QRS voltages and relatively higher resting heart rates. Mixed-sport athletes show intermediate characteristics reflecting combined dynamic and static demands. Although most

findings are benign, abnormalities such as lateral, inferolateral, or anterolateral T-wave inversion warrant further evaluation. Integrating sport-specific patterns with contemporary athlete-specific ECG criteria improves diagnostic accuracy and helps identify athletes requiring additional investigation.

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