医学
烧蚀
心房颤动
导管消融
磁共振成像
心脏消融
心脏病学
病变
不可逆电穿孔
内科学
放射科
电穿孔
外科
生物化学
基因
化学
作者
Thomas Fink,Vanessa Sciacca,Kars Neven,Maxim Didenko,Philipp Sommer,Christian Sohns
摘要
Abstract Pulsed field ablation (PFA) is a promising technology for the treatment of atrial fibrillation (AF). Due to its unique tissue selectivity, PFA potentially bears superior characteristics as compared to established thermal energy sources in AF ablation procedures. Cardiovascular magnetic resonance imaging (CMR) using late gadolinium enhancement (LGE) is an established tool in the analysis of myocardial fibrosis representing atrial cardiomyopathy as well as ablation‐induced atrial scar formation following catheter ablation with thermal energy. Mechanisms of atrial lesion formation differ between thermal ablation and electroporation and its impact on results of CMR imaging are not fully understood until now. In this review article, the potential of CMR imaging for PFA lesion assessment and available data are discussed. Further, additional needs to adopt imaging approaches to the cellular mechanisms of electroporation are considered.
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