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Premature ventricular contraction-induced cardiomyopathy in children
Zebulon Z Spector1, Stephen P Seslar1
1Division of Pediatric Cardiology,Seattle Children's Hospital Heart Center,Seattle,Washington,United States of America.
Insights
High burden of premature ventricular contractions in children can lead to cardiomyopathy. Frequent ectopy often persists, underscoring the need for regular imaging surveillance in pediatric patients.
Area of Science:
- Pediatric Cardiology
- Electrophysiology
- Cardiomyopathy Research
Background:
- Adults with high premature ventricular contraction (PVC) burden can develop reversible cardiomyopathy.
- Limited evidence exists regarding the impact of similar ectopy burden in children.
- This study investigates PVC-induced cardiomyopathy in pediatric patients.
Purpose of the Study:
- To examine the prevalence of PVC-induced cardiomyopathy in children.
- To analyze the natural history of ventricular ectopy in this population.
- To assess the progression to ventricular tachycardia in children with frequent PVCs.
Main Methods:
- Retrospective review of 36 children (6 months-18 years) with PVCs ≥20% of rhythm.
- Exclusion criteria included significant structural heart disease and high baseline ventricular tachycardia.
- Cardiomyopathy assessed via echocardiography.
Main Results:
- 19.4% of children met criteria for cardiomyopathy, primarily at initial presentation.
- Ectopy decreased to <10% without intervention in 16.7% of patients.
- No patient progressed to significant ventricular tachycardia on follow-up.
Conclusions:
- A higher prevalence of cardiomyopathy exists in children with high PVC burden than previously reported.
- Ventricular ectopy tends to persist in pediatric patients.
- Regular imaging for cardiomyopathy evaluation is recommended for children with frequent PVCs.
Background:
Adults with high premature ventricular contraction burden can develop left ventricular dilation, dysfunction, and strain, consistent with a cardiomyopathy, which is reversible with radiofrequency ablation of the premature ventricular contractions. Evidence in children with similar ectopy burden is limited. We performed a single-centre retrospective review to examine the prevalence of premature ventricular contraction-induced cardiomyopathy, natural history of ventricular ectopy, and progression to ventricular tachycardia in children with frequent premature ventricular contractions.
Methods:
Children aged between 6 months and 18 years, with premature ventricular contractions comprising at least 20% of rhythm on 24-hour Holter monitor, were included in our study. Those with significant structural heart disease, ventricular tachycardia greater than 1% of rhythm at the time of premature ventricular contraction diagnosis, or family history of cardiomyopathy - except tachycardia-induced - were excluded. Cardiomyopathy was defined by echocardiographic assessment.
Results:
A total of 36 children met the study criteria; seven patients (19.4%, 95% CI 6.2-32.6%) met the criteria for cardiomyopathy, mostly at initial presentation. Ectopy decreased to <10% of beats without intervention in 16.7% (95% CI 4.3-29.1%) of the patients. No patient progressed to having ventricular tachycardia as more than 1% of beats on follow-up Holter. Radiofrequency ablation was performed in three patients without cardiomyopathy.
Conclusions:
Our study demonstrates a higher prevalence of cardiomyopathy among children with high premature ventricular contraction burden than that previously shown. Ectopy tended to persist throughout follow-up. These trends suggest the need for a multi-centre study on frequent premature ventricular contractions in children. In the interim, regular follow-up with imaging to evaluate for cardiomyopathy is warranted.
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