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电灼对经静脉导线绝缘材料的影响。

Effects of electrocautery on transvenous lead insulation materials.

作者信息

Lim Kiam-Khiang, Reddy Shantanu, Desai Shrojal, Smelley Matthew, Kim Susan S, Beshai John F, Lin Albert C, Burke Martin C, Knight Bradley P

机构信息

Section of Cardiology, Department of Internal Medicine, University of Chicago, Chicago, Illinois 60637, USA.

出版信息

J Cardiovasc Electrophysiol. 2009 Apr;20(4):429-35. doi: 10.1111/j.1540-8167.2008.01342.x. Epub 2008 Oct 27.

Abstract

INTRODUCTION

Insulation defects are a leading cause of transvenous lead failure. The purpose of this study was to determine the effects of electrocautery on transvenous lead insulation materials.

METHODS

A preparation was done to simulate dissection of a transvenous lead from tissues. Radiofrequency energy was delivered using a standard cautery blade at outputs of 10, 20, and 30 W, for 3 and 6 seconds, using parallel and perpendicular blade orientations on leads with outermost insulations of silicone rubber, polyurethane, and silicone-polyurethane copolymer. Damage to each lead segment was classified after visual and microscopic analysis.

RESULTS

Significant insulation damage occurred to almost all polyurethane leads. Full insulation breaches were observed with 30 W regardless of application duration with a parallel direction and with all power outputs with a perpendicular direction. Thermal insulation damage to copolymer insulation was similar to that of the polyurethane leads. In contrast, there was no thermal damage to silicone leads, regardless of the power output and duration of power delivery. However, mechanical insulation damage was observed to all silicone leads when at least 20 W was applied in a direction perpendicular to the lead.

CONCLUSIONS

Polyurethane (PU55D) and copolymer materials have low thermal stability and are highly susceptible to thermal damage during cautery. Implanting physicians should be aware of the lead insulation materials being used during implant procedures and their properties. The use of direct contact cautery on transvenous leads should be minimized to avoid damage to the lead, especially on leads with polyurethane or copolymer outer insulations.

摘要

引言

绝缘缺陷是经静脉导线故障的主要原因。本研究的目的是确定电灼对经静脉导线绝缘材料的影响。

方法

进行一项准备工作以模拟从组织中分离经静脉导线。使用标准电灼刀片以10、20和30瓦的输出功率,分别施加3秒和6秒,在最外层绝缘材料为硅橡胶、聚氨酯和硅 - 聚氨酯共聚物的导线上采用平行和垂直刀片方向进行射频能量传递。在视觉和显微镜分析后对每个导线段的损伤进行分类。

结果

几乎所有聚氨酯导线都出现了明显的绝缘损伤。无论施加持续时间如何,在平行方向上使用30瓦功率时以及在垂直方向上使用所有功率输出时,均观察到完全绝缘破损。共聚物绝缘的热绝缘损伤与聚氨酯导线相似。相比之下,无论功率输出和能量传递持续时间如何,硅橡胶导线均未出现热损伤。然而,当在垂直于导线的方向上施加至少20瓦功率时,所有硅橡胶导线均观察到机械绝缘损伤。

结论

聚氨酯(PU55D)和共聚物材料热稳定性低,在电灼过程中极易受到热损伤。植入医生应了解植入过程中使用的导线绝缘材料及其特性。应尽量减少对经静脉导线直接接触电灼的使用,以避免对导线造成损坏,尤其是对具有聚氨酯或共聚物外层绝缘的导线。

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