首页> 外文期刊>Journal of cardiovascular electrophysiology >In vivo porcine characterization of atrial lesion safety and efficacy utilizing a circular pulsed‐field ablation catheter including assessment of collateral damage to adjacent tissue in supratherapeutic ablation applications
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In vivo porcine characterization of atrial lesion safety and efficacy utilizing a circular pulsed‐field ablation catheter including assessment of collateral damage to adjacent tissue in supratherapeutic ablation applications

机译:使用圆形脉冲野消融导管对心房病变的安全性和有效性进行体内猪表征,包括评估超治疗性消融应用中对邻近组织的附带损伤

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Abstract Introduction Pulsed‐field ablation (PFA), an ablative method that causes cell death by irreversible electroporation, has potential safety advantages over radiofrequency ablation and cryoablation. Pulmonary vein (PV) isolation was performed in a porcine model to characterize safety and performance of a novel, fully‐integrated biphasic PFA system comprising a multi‐channel generator, variable loop circular catheter, and integrated PFA mapping software module. Methods Eight healthy porcine subjects were included. To evaluate safety, multiple ablations were performed, including sites not generally targeted for therapeutic ablation, such as the right inferior PV lumen, right superior PV ostium, and adjacent to the esophagus and phrenic nerve. To evaluate the efficacy, animals were recovered, followed for 30(±3) days, then re‐mapped. Gross pathological and histopathological examinations assessed procedural injuries, chronic thrombosis, tissue ablation, penetration depth, healing, and inflammatory response. Results All eight animals survived follow‐up. PV narrowing was not observed acutely nor at follow‐up, even when ablation was performed deep to the PV ostium. No injury was seen grossly or histologically in adjacent structures. All PVs were durably isolated, confirmed by bidirectional block at re‐map procedure. Histological examination showed complete, transmural necrosis around the circumference of the ablated section of right PVs. Conclusion This preclinical evaluation of a fully‐integrated PFA system demonstrated effective and durable ablation of cardiac tissue and PV isolation without collateral damage to adjacent structures, even when ablation was performed in more extreme settings than those used therapeutically. Histological staining confirmed complete transmural cell necrosis around the circumference of the PV ostium at 30 days.
机译:摘要 引言 脉冲场消融(PFA)是一种通过不可逆电穿孔导致细胞死亡的消融方法,与射频消融和冷冻消融相比具有潜在的安全性优势。在猪模型中进行肺静脉 (PV) 分离,以表征由多通道发生器、可变环形导管和集成 PFA 映射软件模块组成的新型全集成双相 PFA 系统的安全性和性能。方法 选取8头健康猪为研究对象。为了评估安全性,进行了多次消融,包括通常不针对治疗性消融的部位,例如右下 PV 腔、右上 PV 口以及食管和膈神经附近。为了评估疗效,回收动物,随访30(±3)天,然后重新定位。大体病理学和组织病理学检查评估了手术损伤、慢性血栓形成、组织消融、穿透深度、愈合和炎症反应。结果 8只动物均在随访中存活。即使在 PV 口深处进行消融时,也没有在随访中急性观察到 PV 狭窄。在邻近结构中未见严重或组织学损伤。所有PV均被持久隔离,在重新映射过程中通过双向模块确认。组织学检查显示右侧 PV 消融部分周围有完全透壁性坏死。结论 这项对完全集成的PFA系统的临床前评估表明,即使在比治疗中使用的消融更极端的情况下进行消融,也能有效且持久地消融心脏组织和PV隔离,而不会对相邻结构造成附带损害。组织学染色证实 30 天时 PV 口周围有完全透壁细胞坏死。

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