Abstract
BACKGROUND:
In athletes, left ventricular hypertrophy (LVH) criteria based on electrocardiograms (ECGs) have been validated almost exclusively in men using echocardiography. Sex-specific cardiac magnetic resonance (CMR) validation is lacking.
OBJECTIVE:
To evaluate ECG-LVH criteria against contrast-enhanced CMR in male and female elite athletes.
METHODS:
Cross-sectional study in healthy elite athletes. Eight ECG-LVH criteria of voltages and products and QRS duration were quantified using automated ECG analysis, and compared to CMR-derived LVH indicators (indexed left ventricular mass (LVM) and maximum left ventricular wall thickness (maxLVWT). Primary metrics of interest were sex-specific correlations (r) between ECG-LVH criteria and LVM/maxLVWT. Secondary metrics included discriminative performance (AUROC) and sensitivity at a 95%-specificity level for detecting increased LVM or maxLVWT.
RESULTS:
Among 209 elite athletes (median age 25, 45% women), men more frequently met one or more voltage criteria than women (64% vs 45%, P 5 .010). In men, no ECG-LVH criteria showed meaningful correlations or discriminative performance for LVM or maxLVWT. Only QRS duration demonstrated discriminative performance (AUROC: LVM 0.67; maxLVWT 0.74). In women, all voltage and product criteria correlated with LVM (r 5 0.25–0.45) with acceptable discrimination (AUROC: 0.63–0.73). Peguero-Lo Presti, Cornell-, and Modified Sum of 12-Lead Product showed moderate performance (sensitivities: 24%–29%) at 95% specificity in female athletes. Overall, increased precordial QRS voltages were independently correlated with lower extracellular volume (b 5 20.3 mV per %ECV, P < .001).
CONCLUSION:
In elite athletes, ECG-LVH criteria, except for QRS duration, lack diagnostic value for LVH in men. Voltage criteria may have diagnostic potential in women.
| Original language | English |
|---|---|
| Pages (from-to) | 272-280 |
| Number of pages | 9 |
| Journal | Heart Rhythm |
| Volume | 23 |
| Issue number | 2 |
| DOIs | |
| Publication status | Published - Feb 2026 |
Bibliographical note
Publisher Copyright:© 2025 Heart Rhythm Society.
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