Mapping and Ablation of Ventricular Fibrillation Associated With Early Repolarization Syndrome

Author:

Nademanee Koonlawee12,Haissaguerre Michel3,Hocini Mélèze3,Nogami Akihiko4,Cheniti Ghassen3,Duchateau Josselin3,Behr Elijah R.5,Saba Magdi5,Bokan Ryan6,Lou Qing6,Amnueypol Montawatt2,Coronel Ruben7,Khongphatthanayothin Apichai1,Veerakul Gumpanart8

Affiliation:

1. Faculty of Medicine, Chulalongkorn University, Bangkok, Thailand (K.N., A.K.).

2. Pacific Rim Electrophysiology Research Institute at Bumrungrad Hospital, Bangkok, Thailand, and Los Angeles, CA (K.N., M.A.).

3. IHU Liryc, Electrophysiology and Heart Modeling Institute, Foundation Bordeaux Université, Pessac-Bordeaux, France (M.H., M.H., G.C, J.D.).

4. University of Tsukuba, Japan (A.N.).

5. Cardiology Clinical Academic Group, Institute of Molecular and Clinical Sciences, St. George’s, University of London, and St. George’s University Hospitals NHS Foundation Trust London, UK (E.R.B., M.S.).

6. CardioInsight Technologies, Medtronic, Minneapolis, MN (R.B., Q.L.).

7. Department of Experimental Cardiology, Academic Medical Center, Amsterdam, The Netherlands (R.C.).

8. Bhumibol Adulyadej RTAF Hospital, Bangkok Thailand (G.V.).

Abstract

Background: We conducted a multicenter study to evaluate mapping and ablation of ventricular fibrillation (VF) substrates or VF triggers in early repolarization syndromes (ERS) or J-wave syndrome (JWS). Methods: We studied 52 patients with ERS (4 women; median age, 35 years) with recurrent VF episodes. Body surface electrocardiographic imaging and endocardial and epicardial electroanatomical mapping of both ventricles were performed during sinus rhythm and VF for localization of triggers, substrates, and drivers. Ablations were performed on VF substrates, defined as areas that had late depolarization abnormalities characterized by low-voltage fractionated late potentials, and VF triggers. Results: Fifty-one of the 52 patients had detailed mapping that revealed 2 phenotypes: group 1 had late depolarization abnormalities predominantly at the right ventricular (RV) epicardium (n=40), and group 2 had no depolarization abnormalities (n=11). Group 1 can be subcategorized into 2 groups: Group 1A included 33 patients with ERS with Brugada electrocardiographic pattern, and group 1B included 7 patients with ERS without Brugada electrocardiographic pattern. Late depolarization areas colocalize with VF driver areas. The anterior RV outflow tract/RV epicardium and the RV inferior epicardium are the major substrate sites for group 1. The Purkinje network is the leading underlying VF trigger in group 2 that had no substrates. Ablations were performed in 43 patients: 31 and 5 group 1 patients had only VF substrate ablation and VF substrates plus VF trigger, respectively (mean, 1.4±0.6 sessions); 6 group 2 patients and 1 patient without group classification had only Purkinje VF trigger ablation (mean, 1.2±0.4 sessions). Ablations were successful in reducing VF recurrences ( P <0.0001). After follow-up of 31±26 months, 39 (91%) had no VF recurrences. Conclusions: There are 2 phenotypes of ERS/J-wave syndrome: one with late depolarization abnormality as the underlying mechanism of high-amplitude J-wave elevation that predominantly resides in the RV outflow tract and RV inferolateral epicardium, serving as an excellent target for ablation, and the other with pure ERS devoid of VF substrates but with VF triggers that are associated with Purkinje sites. Ablation is effective in treating symptomatic patients with ERS/J-wave syndrome with frequent VF episodes.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine

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