Application repetition and electrode-tissue contact result in deeper lesions using a pulsed-field ablation circular variable loop catheter.

IF 7.9 1区 医学 Q1 CARDIAC & CARDIOVASCULAR SYSTEMS Europace Pub Date : 2024-08-30 DOI:10.1093/europace/euae220
Luigi Di Biase, Jacopo Marazzato, Tara Gomez, Eric Byun, Fengwei Zou, Vito Grupposo, Sanghamitra Mohanty, Vincenzo Mirco La Fazia, Giuseppe Ammirati, Aung Lin, Domingo Ynoa Garcia, Domenico Della Rocca, Amin Al Ahamad, Marco Schiavone, Alessio Gasperetti, Michael Freilich, Juan Cedeno Serna, Giovanni Forleo, Xu Liu, Dhanunjaya Lakkireddy, Claudio Tondo, Andrea Natale, Xiao-Dong Zhang
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引用次数: 0

Abstract

Aims: Pulsed-field ablation (PFA) is a novel, myocardial-selective, non-thermal ablation modality used to target cardiac arrhythmias. Although prompt electrogram (EGM) signal disappearance is observed immediately after PFA application in the pulmonary veins, whether this finding results in adequate transmural lesions is unknown. The aim of this study is to check whether application repetition and catheter-tissue contact impact lesion formation during PFA.

Methods and results: A circular loop PFA catheter was used to deliver repeated energy applications with various levels of contact force. A benchtop vegetal potato model and a beating heart ventricular myocardial model were utilized to evaluate the impact of application repetition, contact force, and catheter repositioning on contiguity and lesion depth. Lesion development occurred over 18 h in the vegetal model and over 6 h in the porcine model. Lesion formation was found to be dependent on application repetition and contact. In porcine ventricles, single and multiple stacked applications led to a lesion depth of 3.5 ± 0.7 and 4.4 ± 1.3 mm, respectively (P = 0.002). Furthermore, the greater the catheter-tissue contact, the more contiguous and deeper the lesions in the vegetal model (1.0 ± 0.9 mm with no contact vs. 5.4 ± 1.4 mm with 30 g of force; P = 0.0001).

Conclusion: Pulsed-field ablation delivered via a circular catheter showed that both repetition and catheter contact led independently to deeper lesion formation. These findings indicate that endpoints for effective PFA are related more to PFA biophysics than to mere EGM attenuation.

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使用脉冲场消融环形可变环路导管在较深病变中的应用重复和电极-组织接触结果。
背景:脉冲场消融(PFA)是一种新型的心肌选择性非热消融方式,用于治疗心律失常。虽然在肺静脉应用 PFA 后可立即观察到 EGM 信号消失,但这一发现是否会导致充分的跨膜病变尚不清楚。研究目的:应用重复和导管与组织接触是否会影响 PFA 期间病变的形成:方法:使用环形 PFA 导管以不同程度的接触力重复施加能量。利用台式植物马铃薯模型和跳动的心室心肌模型来评估施用重复、接触力和导管重新定位对毗连性和病变深度的影响。在植物模型中,病变的形成持续了 18 个小时,而在猪模型中则持续了 6 个小时:结果:研究发现,病变的形成取决于施用次数和接触情况。在猪心室中,单次和多次叠加应用导致的病变深度分别为 3.5 ± 0.7 毫米和 4.4 ± 1.3 毫米(p =0.002)。此外,在植物模型中,导管与组织接触越多,病变越连续、越深(无接触时为 1.0±0.9 mm,30 g 力时为 5.4±1.4 mm;p=0.0001):结论:通过圆形导管输送的 PFA 显示,重复和导管接触都会导致更深的病变形成。这些研究结果表明,有效 PFA 消融的终点与 PFA 的生物物理更相关,而不仅仅是 EGM 衰减。
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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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