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Assessment of an ECG-Based System for Localizing Ventricular Arrhythmias in Patients With Structural Heart Disease
Shijie Zhou1, Amir AbdelWahab2, John L Sapp2,3
1Alliance for Cardiovascular Diagnostic and Treatment Innovation Johns Hopkins University Baltimore MD.
Insights
The automatic arrhythmia-origin localization (AAOL) system accurately identifies ventricular tachycardia (VT) and premature ventricular contraction (PVC) origins in patients with heart disease. This technology shows promise for improved clinical utility in arrhythmia ablation procedures.
Area of Science:
- Cardiology
- Medical Devices
- Electrophysiology
Background:
- Previously developed intraprocedural automatic arrhythmia-origin localization (AAOL) system for real-time idiopathic ventricular arrhythmia identification using 3-lead ECG.
- Need to assess AAOL system's accuracy for ventricular tachycardia (VT) and premature ventricular contraction (PVC) origin sites in structural heart disease.
Purpose of the Study:
- To evaluate the localization accuracy of the AAOL system for VT exit and PVC origin sites in patients with structural heart disease.
Main Methods:
- Retrospective and prospective case series of 42 patients with structural heart disease undergoing VT/PVC ablation.
- AAOL system combined 120-ms QRS integrals (leads III, V2, V6) with pace mapping for site prediction.
- Predicted sites projected onto patient-specific electroanatomic mapping; clinical identification via activation/pace mapping.
Main Results:
- Mean localization accuracy of 6.5±2.6 mm (retrospective, 19 patients, 25 VTs) and 5.9±2.6 mm (prospective, 23 patients, 26 sites).
- No significant difference in localization error between epicardial (6.0 mm) and endocardial (5.8 mm) sites (P=0.895).
Conclusions:
- The AAOL system demonstrates accurate localization of VT exit/PVC origin sites in structural heart disease.
- AAOL system performance surpasses current systems, indicating significant potential clinical utility for arrhythmia ablation.
Abstract:
Background We have previously developed an intraprocedural automatic arrhythmia-origin localization (AAOL) system to identify idiopathic ventricular arrhythmia origins in real time using a 3-lead ECG. The objective was to assess the localization accuracy of ventricular tachycardia (VT) exit and premature ventricular contraction (PVC) origin sites in patients with structural heart disease using the AAOL system. Methods and Results In retrospective and prospective case series studies, a total of 42 patients who underwent VT/PVC ablation in the setting of structural heart disease were recruited at 2 different centers. The AAOL system combines 120-ms QRS integrals of 3 leads (III, V2, V6) with pace mapping to predict VT exit/PVC origin site and projects that site onto the patient-specific electroanatomic mapping surface. VT exit/PVC origin sites were clinically identified by activation mapping and/or pace mapping. The localization error of the VT exit/PVC origin site was assessed by the distance between the clinically identified site and the estimated site. In the retrospective study of 19 patients with structural heart disease, the AAOL system achieved a mean localization accuracy of 6.5±2.6 mm for 25 induced VTs. In the prospective study with 23 patients, mean localization accuracy was 5.9±2.6 mm for 26 VT exit and PVC origin sites. There was no difference in mean localization error in epicardial sites compared with endocardial sites using the AAOL system (6.0 versus 5.8 mm, P=0.895). Conclusions The AAOL system achieved accurate localization of VT exit/PVC origin sites in patients with structural heart disease; its performance is superior to current systems, and thus, it promises to have potential clinical utility.
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