Thermal side effects during pulsed field ablation: an analysis using computer modelling.

IF 7.4 1区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS Europace Pub Date : 2025-03-05 DOI:10.1093/europace/euaf035
Marcela Mercado-Montoya, Tatiana Gomez-Bustamante, Steven R Mickelsen, Erik Kulstad, Ana González-Suárez, Lawrence J Overzet
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Abstract

Aims: Pulsed field ablation (PFA) is described as non-thermal, but data from oncology and cardiology show thermal effects occur. The specific waveform parameters influencing thermal energy development during PFA are unclear. The aim of this study is to numerically evaluate the thermal effects of PFA on myocardial and oesophageal tissue at various peak voltage conditions.

Methods and results: A three-dimensional computer model of the left atrium quantified thermal effects from PFA at peak voltages of 1, 1.5, and 2 kV. Energy was applied using a bipolar configuration with far-field and symmetry boundaries set as electrically insulating. A monophasic waveform with a 100 μs pulse width and a 1 s gap between pulses was applied for a total of 50 pulses, mimicking clinical conditions. Minimal temperature rise in the oesophagus was observed with 1 kV pulses (214.5 J). At 1.5 and 2 kV (570.3 and 1.23 kJ), temperatures reached 46.3°C and >62°C, respectively, after a single pulse train. These findings suggest that repeated applications could lead to even higher temperatures, especially if good tissue contact is obtained. These results align with data from other medical fields using pulsed field treatments.

Conclusion: Thermal effects from PFA depend on the total energy deposited, with peak voltage being a significant factor. Current commercially available PFA systems have the potential to induce collateral thermal injury with repeated applications of pulsed field energy. This highlights the need for careful monitoring and adjustment of PFA parameters in clinical settings.

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脉冲场烧蚀过程中的热副作用:用计算机模拟的分析。
目的:脉冲场消融(PFA)被描述为非热的,但来自肿瘤学和心脏病学的数据显示会发生热效应。影响PFA过程中热能发展的具体波形参数尚不清楚。本研究的目的是数值评价PFA在不同峰值电压条件下对心肌和食管组织的热效应。方法和结果:左心房三维计算机模型量化了PFA在1kv、1.5 kV和2kv峰值电压下的热效应。能量应用于双极结构,远场和对称边界设置为电绝缘。采用脉冲宽度为100 μs,脉冲间隔为1 s的单相波形,共50个脉冲,模拟临床情况。在1 kV脉冲(214.5 J)下,食道温度最低。在1.5和2 kV脉冲(570.3和1.23 kJ)下,单脉冲后食道温度分别达到46.3°C和bbb62°C。这些发现表明,重复应用可能导致更高的温度,特别是如果获得良好的组织接触。这些结果与其他医学领域使用脉冲场治疗的数据一致。结论:PFA的热效应取决于沉积的总能量,其中峰值电压是重要因素。目前市售的PFA系统有可能在脉冲场能量的反复应用中诱发附带热损伤。这突出了在临床环境中仔细监测和调整PFA参数的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Europace
Europace 医学-心血管系统
CiteScore
10.30
自引率
8.20%
发文量
851
审稿时长
3-6 weeks
期刊介绍: EP - Europace - European Journal of Pacing, Arrhythmias and Cardiac Electrophysiology of the European Heart Rhythm Association of the European Society of Cardiology. The journal aims to provide an avenue of communication of top quality European and international original scientific work and reviews in the fields of Arrhythmias, Pacing and Cellular Electrophysiology. The Journal offers the reader a collection of contemporary original peer-reviewed papers, invited papers and editorial comments together with book reviews and correspondence.
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