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心外膜心房消融的动物研究。

Animal studies of epicardial atrial ablation.

机构信息

Barnes Jewish Hospital and Division of Cardiothoracic Surgery, Washington University School of Medicine, St. Louis, Missouri, USA.

出版信息

Heart Rhythm. 2009 Dec;6(12 Suppl):S41-5. doi: 10.1016/j.hrthm.2009.07.028.

Abstract

The Cox maze procedure is an effective treatment of atrial fibrillation, with a long-term freedom from recurrence greater than 90%. The original procedure was highly invasive and required cardiopulmonary bypass. Modifications of the procedure that eliminate the need for cardiopulmonary bypass have been proposed, including use of alternative energy sources to replace cut-and-sew lesions with lines of ablation made from the epicardium on the beating heart. This has been challenging because atrial wall muscle thickness is extremely variable, and the muscle can be covered with an epicardial layer of fat. Moreover, the circulating intracavitary blood acts as a potential heat sink, making transmural lesions difficult to obtain. In this report, we summarize the use of nine different unidirectional devices (four radiofrequency, two microwave, two lasers, one cryothermic) for creating continuous transmural lines of ablation from the atrial epicardium in a porcine model. We define a unidirectional device as one in which all the energy is applied by a single transducer on a single heart surface. The maximum penetration of any device was 8.3 mm. All devices except one, the AtriCure Isolator pen, failed to penetrate 2 mm in some nontransmural sections. Future development of unidirectional energy sources should be directed at increasing the maximum depth and the consistency of penetration.

摘要

Cox 迷宫手术是治疗心房颤动的有效方法,其长期无复发率大于 90%。原始手术方法创伤性大,需要体外循环。已经提出了消除体外循环需求的手术改良方法,包括使用替代能源替代切割和缝合的病变,使用从跳动心脏的心外膜上形成的消融线。这具有挑战性,因为心房壁肌肉厚度变化极大,并且肌肉可能被心外膜脂肪层覆盖。此外,循环的心腔内血液充当潜在的热汇,使得难以获得贯穿壁的病变。在本报告中,我们总结了在猪模型中使用九种不同的单向装置(四种射频、两种微波、两种激光、一种冷冻)从心房心外膜创建连续贯穿壁消融线的用途。我们将单向装置定义为所有能量均由单个换能器施加在单个心脏表面上的装置。任何装置的最大穿透深度均为 8.3 毫米。除了 AtriCure Isolator 笔之外的所有装置在某些非贯穿壁部分都无法穿透 2 毫米。单向能源的未来发展应着眼于增加最大深度和穿透的一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c192/2907672/0540ad108ff7/nihms163725f1a.jpg

相似文献

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Animal studies of epicardial atrial ablation.心外膜心房消融的动物研究。
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