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Ventricular Repolarization Dispersion is a Potential Risk for the Development of Life-Threatening Arrhythmia in
Naoko Tashiro1, Jun Muneuchi2, Hiroki Ezaki1
1Department of Pediatrics, Kyushu Hospital, Japan Community Healthcare Organization, 1-8-1, Kishinoura, Yahatanishi-ku, Kitakyushu, Fukuoka, 806-8501, Japan.
Insights
In children with hypertrophic cardiomyopathy (HCM), prolonged T wave peak-to-end (Tp-e) intervals and increased Tp-e/QT ratios can predict life-threatening arrhythmias (LTAs). These measurements help stratify risk for LTA and sudden cardiac death (SCD) in pediatric HCM patients.
Area of Science:
- Cardiology
- Pediatrics
- Electrophysiology
Background:
- Hypertrophic cardiomyopathy (HCM) poses a risk of life-threatening arrhythmia (LTA), a major cause of death in children.
- Early risk stratification and intervention are crucial for managing pediatric HCM patients.
Purpose of the Study:
- To investigate the T wave peak-to-end (Tp-e) interval and Tp-e/QT ratio as predictors of LTA in children with HCM.
- To assess ventricular repolarization dispersion as a risk marker for LTA in pediatric HCM.
Main Methods:
- Electrocardiographic analysis of 25 children with HCM, comparing Tp-e and Tp-e/QT intervals between those with and without LTA.
- Calculation of corrected Tp-e interval and Tp-e/QT ratio at baseline and follow-up visits.
- Determination of cutoff values for Tp-e and Tp-e/QT to predict LTA.
Main Results:
- Children who developed LTA were significantly older at diagnosis.
- Prolonged corrected Tp-e interval (103 ms vs. 78 ms) and increased Tp-e/QT ratio (0.28 vs. 0.22) were observed in children with LTA.
- Cutoff values of 91 ms for corrected Tp-e and 0.28 for Tp-e/QT predicted LTA with high sensitivity and specificity.
Conclusions:
- Elevated Tp-e interval and Tp-e/QT ratio are significant predictors of LTA in pediatric HCM.
- Temporal assessment of ventricular repolarization dispersion can aid in risk stratification for LTA and sudden cardiac death (SCD) in children with HCM.
Abstract:
The risk stratification and early interventions are necessary in patients with hypertrophic cardiomyopathy (HCM), as life-threatening arrhythmia (LTA) is a leading cause of death. This study aimed to explore whether an interval between the peak of the T wave to the end terminal of the T wave (Tp-e), which represents ventricular repolarization dispersion, could predict the risk for LTA in children with HCM. We analyzed electrocardiography at the first and last visits in children (aged < 15 years) with HCM, and compared Tp-e interval and the ratio of Tp-e interval to QT interval (Tp-e/QT) between children with and without LTA. We studied 25 children with HCM. During the follow-up of 85 (38-146) months, there were 7 children with LTA. The 5-year sudden cardiac death (SCD) risk was 1.4 (1.1-2.5) %, which suggested that our cohort consisted of patients at a lower risk for SCD. Age was significantly older in children with LTA compared to those without it (12.5 vs.1.0 years, P = 0.037), although sex, the presence of family history and symptoms at diagnosis, the maximum left ventricular wall thickness Z-score did not differ between the groups. At the last electrocardiography before LTA, corrected Tp-e interval and Tp-e/QT ratio were significantly greater in patients with LTA compared to those in patients without LTA (corrected Tp-e: 103 vs. 78 ms, P = 0.020; Tp-e/QT: 0.28 vs. 0.22, P = 0.046). Corrected Tp-e and Tp-e/QT ratio cutoff values of 91 ms and 0.28 yielded as the predictors for LTA with sensitivity of 85% and 72%, specificity of 71% and 89%, respectively. Prolonged absolute and corrected Tp-e intervals and an increase in the Tp-e/QT ratio can be useful predictors for LTA in children with HCM. We offer temporal assessments of ventricular repolarization dispersion to stratify the risk for the development of LTA/SCD among children with HCM.
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