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Epicardial Catheter Ablation Using High-Intensity Ultrasound: Validation in a Swine Model

Authors :
Srikant Duggirala
Vasant A. Salgaonkar
Richard E. Sievers
Yasuaki Tanaka
Bennett K. Ng
Babak Nazer
Chris J. Diederich
Peter D. Jones
Edward P. Gerstenfeld
Source :
Circulation. Arrhythmia and electrophysiology. 8(6)
Publication Year :
2015

Abstract

Background— Epicardial radiofrequency catheter ablation of ventricular tachycardia remains challenging because of the presence of deep myocardial scar and adjacent cardiac structures, such as the coronary arteries, phrenic nerve, and epicardial fat that limit delivery of radiofrequency energy. High-intensity ultrasound (HIU) is an acoustic energy source able to deliver deep lesions through fat, while sparing superficial structures. We developed and tested an epicardial HIU ablation catheter in a closed chest, in vivo swine model. Methods and Results— The HIU catheter is an internally cooled, 14-French, side-facing catheter, integrated with A-mode ultrasound guidance. Swine underwent percutaneous subxyphoid epicardial access and ablation with HIU (n=10 swine) at 15, 20, and 30 W. Compared with irrigated radiofrequency lesions in control swine (n = 5), HIU demonstrated increased lesion depth (HIU 11.6±3.2 mm versus radiofrequency 4.7±1.6 mm; mean±SD) and epicardial sparing (HIU 2.9±2.1 mm versus radiofrequency 0.1±0.2 mm) at all HIU powers, and increased lesion volume at HIU 20 and 30 W ( P Conclusions— Compared with radiofrequency, HIU ablation in vivo demonstrates significantly deeper and larger lesions with greater epicardial sparing in a dose-dependent manner. Further development of this catheter may lead to a promising alternative to epicardial radiofrequency ablation.

Details

ISSN :
19413084
Volume :
8
Issue :
6
Database :
OpenAIRE
Journal :
Circulation. Arrhythmia and electrophysiology
Accession number :
edsair.doi.dedup.....d7ac1d3bb23db422a87b1bb9072dddbc