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[侵入性电生理学的创新:我们将面临什么?]

[Innovations in invasive electrophysiology : What awaits us?].

作者信息

Müller Patrick, Eckardt Lars

机构信息

Klinik für Kardiologie II, Rhythmologie, Universitätsklinikum Münster, 48149, Münster, Deutschland.

出版信息

Herzschrittmacherther Elektrophysiol. 2020 Dec;31(4):362-367. doi: 10.1007/s00399-020-00704-9. Epub 2020 Jul 29.

Abstract

Technological developments in percutaneous catheter ablation for the treatment of cardiac arrhythmias have progressed from direct current shock ablation over the introduction of radiofrequency ablation to routine clinical procedures. Invasive electrophysiology is characterized by continuous technical innovation and an accompanying increasing understanding of underlying electrophysiologic mechanisms. A number of technical developments were promising, e.g., laser ablation, multipolar biphasic ablation, cryoballoon ablation, contact force, high density three-dimensional (3D) mapping, and the concept of rotors for atrial fibrillation ablation. Despite intense progress, one of the main challenges of catheter ablation is still the creation of tissue-specific chronic transmural lesions and avoidance of collateral damage. The purpose of this review is to present a status quo of catheter ablation of supraventricular tachycardia, atrial fibrillation, and ventricular tachycardia and to discuss future technical innovations and strategies. In the presence of the intense dynamic developments, this review can not consider all new approaches but will rather highlight some of the most promising innovations. Topics of discussion include the use of nonfluoroscopic catheter navigation, the introduction of new ablation tools, the development of alternative energy sources, the integration of new imaging modalities, and the establishment of novel ablation strategies.

摘要

用于治疗心律失常的经皮导管消融技术的发展,已从直流电休克消融发展到引入射频消融,并成为常规临床程序。侵入性电生理学的特点是技术不断创新,同时对潜在电生理机制的理解也日益加深。一些技术发展很有前景,例如激光消融、多极双相消融、冷冻球囊消融、接触力、高密度三维(3D)标测以及心房颤动消融的转子概念。尽管取得了巨大进展,但导管消融的主要挑战之一仍然是形成组织特异性的慢性透壁损伤并避免附带损伤。本综述的目的是介绍室上性心动过速、心房颤动和室性心动过速导管消融的现状,并讨论未来的技术创新和策略。鉴于当前的迅猛发展态势,本综述无法涵盖所有新方法,而是着重介绍一些最具前景的创新。讨论的主题包括非荧光透视导管导航的应用、新消融工具的引入、替代能源的开发、新成像模式的整合以及新型消融策略的建立。

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