Key result
ECG precordial voltages correlate poorly with echocardiographic LV mass in adolescent athletes, modified by BMI.
Why the study?
Controversy exists over ECG screening in adolescent athletes due to lack of specificity, cost, and false positive outcomes, motivating analysis of ECG voltage relation to LV mass.
Does ECG precordial lead voltage correlate with echocardiographic left ventricular mass in adolescent athletes?
Cohort (n=659)
Does ECG precordial lead voltage correlate with echocardiographic left ventricular mass in adolescent athletes?
Effect estimate: correlation < 0.20
There is poor correlation between ECG precordial voltages and echocardiographic LV mass in adolescent athletes, suggesting limited utility of these ECG criteria for screening.
May warrant caution using ECG voltages for LV mass screening in adolescent athletes; leaves open need for BMI-adjusted or alternative criteria in validation studies.
BACKGROUND: In attempts to detect diseases that may place adolescents at risk for sudden death, some have advocated for population-based screening. Controversy exists over electrocardiography (ECG) screening due to the lack of specificity, cost, and detrimental effects of false positive or extraneous outcomes. OBJECTIVES: Analyze the relationship between precordial lead voltage on ECG and left ventricle (LV) mass by echocardiogram in adolescent athletes. METHODS: Retrospective cohort analysis of a prospectively obtained population of self-identified adolescent athletes during sports screening with ECG and echocardiogram. Correlation between ECG LV voltages (R wave in V6 [RV6] and S wave in lead V1 [SV1]) was compared to echocardiogram-based measurements of left ventricular mass. Potential effects on ECG voltages by body anthropometrics, including weight, body mass index (BMI), and body surface area were analyzed, and ECG voltages indexed to BMI were compared to LV mass indices to analyze for improved correlation. RESULTS: A total of 659 adolescents enrolled in this study (64% male). The mean age was 15.4 years (14-18). The correlations between LV mass and RV6, SV1, and RV6 + SV1 were all less than 0.20. The false positive rate for abnormal voltages was relatively high (5.5%) but improved if abnormal voltages in both RV6 and SV1 were mandated simultaneously (0%). Indexing ECG voltages to BMI significantly improved correlation to LV mass, though false positive findings were increased (12.9%). CONCLUSION: There is poor correlation between ECG precordial voltages and echocardiographic LV mass. This relationship is modified by BMI. This finding may contribute to the poor ECG screening characteristics.
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Czosek et al. (2014) conducted a cohort in adolescent athletes (n=659). ECG precordial voltages was evaluated on Correlation between ECG LV voltages and echocardiogram-based measurements of left ventricular mass (correlation < 0.20). ECG precordial voltages showed poor correlation (<0.20) with echocardiographic left ventricular mass in adolescent athletes, a relationship that was modified by BMI.
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