Ventricular tachycardia mapping and ablation in arrhythmogenic right ventricular cardiomyopathy/dysplasia: Lessons
Cory M Tschabrunn1, Francis E Marchlinski1
1Cory M Tschabrunn, Harvard-Thorndike Electrophysiology Institute, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA 02215, United States.
Insights
Arrhythmogenic right ventricular cardiomyopathy (ARVC) causes fibrosis and dangerous arrhythmias. Electrophysiology studies have improved understanding, making catheter ablation an effective treatment for ventricular tachycardia in ARVC patients.
Area of Science:
- Cardiology
- Electrophysiology
- Genetics
Background:
- Arrhythmogenic right ventricular cardiomyopathy/dysplasia (ARVC/D) is an inherited condition causing myocardial fibrosis.
- The resulting arrhythmias share similarities with other cardiomyopathies but require specialized treatment approaches.
- Understanding of ARVC/D arrhythmia mechanisms and treatment has historically been limited.
Purpose of the Study:
- To review insights from electrophysiology studies on ARVC/D.
- To describe the evolution of catheter ablation for ventricular tachycardia in ARVC/D.
- To present a methodical approach to successful ablation in these patients.
Main Methods:
- Prospective studies in the electrophysiology laboratory.
- Characterization of electrophysiologic and electroanatomic substrate.
- Analysis of catheter ablation outcomes over time.
Main Results:
- Electrophysiology studies have detailed the substrate underlying ventricular tachycardia in ARVC/D.
- Catheter ablation has evolved from limited success to an effective therapy.
- Increased understanding has led to improved patient outcomes.
Conclusions:
- Catheter ablation is now a preferred treatment for ventricular tachycardia in ARVC/D.
- Continued clinical experience refines understanding and treatment strategies.
- A methodical approach based on electrophysiologic insights improves ablation success.
Abstract:
Arrhythmogenic right ventricular cardiomyopathy/dysplasia (ARVC/D) is primarily believed to be an inherited cardiomyopathy that subsequently results in significant myocardial fibrosis. The arrhythmogenic consequences that result from the development of fibrosis are similar to other nonischemic cardiomyopathies, but the unique endocardial-epicardial disease process of ARVC/D requires a specialized approach for arrhythmia treatment in the electrophysiology laboratory. Although the association between ARVC/D and development of ventricular arrhythmias has become increasingly clear over the last 2 decades, our understanding of the arrhythmia mechanisms, underlying electrophysiologic substrate, and treatment strategies were significantly limited. Prospective studies performed in the electrophysiology laboratory allowed detailed characterization of the electrophysiologic and electroanatomic substrate underlying ventricular tachycardia in patients with ARVC/D. This has allowed clinician scientists to better characterize the arrhythmia mechanism and develop the necessary strategies to perform successful catheter ablation. Early in this experience, catheter ablation was considered a limited and largely unsuccessful treatment for patients experiencing painful and recurrent defibrillator therapy. Through our increased understanding of the disease process, catheter ablation has evolved to become an effective and preferred therapy for a majority of these patients. Our understanding of the disease and necessary approaches to provide successful treatment continues to evolve as the clinical experience grows. This article will review these important insights from the electrophysiology laboratory and how application of this knowledge has facilitated the development of a methodical approach to successfully perform ventricular tachycardia ablation in patients with ARVC/D.
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