Zhai Zongwang, Ling Yuchen, Wang Yanjiang, Shi Liang, Liu Xingpeng
Department of Cardiology, Beijing Chaoyang Hospital, Capital Medical University, Beijing, China.
Department of Cardiology, Peking University Shougang Hospital, Beijing, China.
Front Cardiovasc Med. 2024 Aug 1;11:1426920. doi: 10.3389/fcvm.2024.1426920. eCollection 2024.
Pulsed field ablation, as a non-thermal ablation modality, has received increasing attention. The aim of this study is to explore whether a reversible pulsed electric field (RPEF) can temporarily inhibit electrical conduction and provide a novel method for precise ablation of arrhythmia.
RPEF energy was delivered from an ablation catheter to the atrium of six dogs, followed by a series of electrogram and histology assessments.
RPEF ablation of ordinary myocardium resulted in an average reduction of 68.3% (range, 53.7%-83.8%) in electrogram amplitude, while 5 min later, the amplitude in eight electrograms returned to 77.9% (range, 72.4%-87.3%) of baseline. Similarly, the amplitude of the sinoatrial node electrograms reduced by an average of 73.0% (range, 60.2%-84.4%) after RPEF ablation, but recovered to 84.9% (range, 80.3%-88.5%) of baseline by 5 min. No necrotic change was detected in histopathology. Transient third-degree atrioventricular block occurred following the ablation of the maximum His potential sites with RPEF, the duration of which was voltage dependent. The histopathological results showed necrosis of the myocardium at the ablation sites but no injury to His bundle cells.
RPEF can be applied to transiently block electrical conduction in myocardial tissues contributing to precise ablation.
脉冲场消融作为一种非热消融方式,受到了越来越多的关注。本研究的目的是探讨可逆脉冲电场(RPEF)是否能暂时抑制电传导,并为心律失常的精确消融提供一种新方法。
将RPEF能量从消融导管传递至6只犬的心房,随后进行一系列心电图和组织学评估。
RPEF消融普通心肌后,心电图振幅平均降低68.3%(范围为53.7%-83.8%),而5分钟后,8份心电图的振幅恢复至基线的77.9%(范围为72.4%-87.3%)。同样,RPEF消融后,窦房结心电图振幅平均降低73.0%(范围为60.2%-84.4%),但在5分钟时恢复至基线的84.9%(范围为80.3%-88.5%)。组织病理学未检测到坏死改变。在用RPEF消融最大希氏束电位部位后出现短暂性三度房室传导阻滞,其持续时间与电压有关。组织病理学结果显示消融部位心肌坏死,但希氏束细胞未受损伤。
RPEF可用于暂时阻断心肌组织中的电传导,有助于精确消融。