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Assessment of Transmural Dispersion of Repolarization in Children with Mitral Valve Prolapse
Yazdan Ghandi1, Bita Ghahremani1, Danial Habibi2
1Amir Kabir Hospital, Arak University of Medical Sciences, Arak, Iran.
Insights
Children with mitral valve prolapse (MVP) exhibit impaired transmural dispersion of repolarization (TDR), increasing their risk for ventricular arrhythmias. This TDR is linked to the severity of mitral regurgitation.
Area of Science:
- Cardiology
- Pediatric Electrophysiology
Background:
- Mitral valve prolapse (MVP) in children may predispose to ventricular arrhythmias.
- Transmural dispersion of repolarization (TDR) is a potential mechanism for arrhythmias in MVP.
- Assessing TDR alterations and their relation to mitral regurgitation severity is crucial.
Purpose of the Study:
- To evaluate ventricular repolarization changes in pediatric MVP patients.
- To investigate the correlation between TDR parameters and mitral regurgitation severity.
Main Methods:
- Studied 50 children with MVP and 50 healthy controls.
- Performed 12-lead electrocardiography and echocardiography.
- Analyzed TDR parameters including QT, QTc, Tp-e, JTc intervals and their dispersions, and ratios.
Main Results:
- Children with MVP showed significantly higher QTc dispersion, Tp-e dispersion, Tp-e/QTc, JTc dispersion, Tp-e/JT, and Tp-e/JTc compared to controls.
- No significant difference in QT and QTc intervals was observed.
- Positive correlations were found between TDR parameters (Tp-e dispersion, Tp-e/QTc, JTc dispersion, Tp-e/JTc) and the degree of mitral regurgitation.
Conclusions:
- Ventricular repolarization, specifically TDR, is impaired in children with MVP.
- The degree of TDR abnormalities correlates with mitral regurgitation severity.
- Children with MVP may be at increased risk for life-threatening ventricular arrhythmias.
Abstract:
Background: Children with mitral valve prolapse (MVP) may be prone to ventricular arrhythmias due to transmural dispersion of repolarization (TDR). This study aimed to assess alterations in ventricular repolarization in children with MVP and to investigate their relationships with the degree of mitral regurgitation. Methods: Fifty children with MVP and 50 age- and sex-matched healthy children as controls were studied. Twelve-lead electrocardiography and echocardiography were performed in all the subjects. TDR parameters were QT and QTc intervals, QTc dispersion, Tp-e interval, Tp-e interval dispersion, Tp-e/QT, Tp-e/QTc, JTc, JTc dispersion, Tp-e/JT, and Tp-e/JTc. Results: The mean age of the 50 patients with MVP was 12.45±2.50 years (F/M: 15/35). There were no significant differences in QT and QTc intervals between the 2 groups. QTc dispersion (P=0.001), Tp-e dispersion interval (P=0.002), Tp-e/QTc (P=0.001), JTc dispersion (P=0.023), Tp-e/JT (P=0.004), and Tp-e/JTc (P=0.002) were significantly higher in the patients with MVP than in the healthy controls. Positive correlations were found between Tp-e dispersion interval and Tp-e/QTc and an increase in the degree of mitral regurgitation (P=0.012, r=0.42 and P=0.004, r=0.31, respectively). Additionally, positive correlations were detected between JTc dispersion and Tp-e/JTc and an increase in the degree of mitral regurgitation (P=0.032, r=0.20 and P=0.024, r=0.42, correspondingly). Conclusion: In this study, TDR was damaged in children with MVP and was positively correlated with an increase in the degree of mitral regurgitation. It appears that children with MVP are prone to life-threatening ventricular arrhythmias.
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