首页> 外文期刊>Journal of vascular and interventional radiology: JVIR >A radiofrequency electrode catheter-guide wire system for arterial occlusion.
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A radiofrequency electrode catheter-guide wire system for arterial occlusion.

机译:用于动脉闭塞的射频电极导管-导线系统。

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摘要

PURPOSE: To describe the design of a radiofrequency (RF) electrode catheter/guide wire system to allow endovascular coagulation of vessels. MATERIALS AND METHODS: A circuit was created by modifying an ordinary microcatheter. An electrically conductive ring was placed at a microcatheter tip, and an extension lead at the hub site. They were each connected to an inherent coil mesh. The rings (ie, cathodes) were 1, 3, 5, 10, and 20 mm in length. In egg white, a coagulation study was performed by changing the length of the guide wire (ie, anode; 1, 3, 5, 10, 20, and 40 mm) in each cathode at 20 W. The coagulation time and site were analyzed. In rabbits, the renal artery was ablated with the use of a 20-mm cathode and 10-mm anode. RESULTS: In the egg white study, the coagulation time was proportionally increased and was dependent on the lengths of the cathode and anode (P < .05). Coagula developed at the anode to the 3-mm protrusion for the 1-mm cathode, to the 5-mm protrusion for the 3-mm cathode, to the 5-mm protrusion for the 5-mm cathode, to the 10-mm protrusion for the 10-mm cathode, and to the 20-mm protrusion for the 20-mm cathode. In rabbits, the renal artery was successfully occluded. Pathologic examination showed occlusion of the renal artery with organization, and the presence of a necrotic arterial wall with fibrosis, inflammation, and intact internal elastic lamina. CONCLUSIONS: The RF electrode catheter/guide wire system successfully coagulated egg white and occluded the rabbit renal artery.
机译:目的:描述射频(RF)电极导管/导线系统的设计,以允许血管内血管凝结。材料与方法:通过修改普通的微导管创建电路。将导电环放置在微导管末端,延长线放置在集线器位置。它们每个都连接到固有的线圈网格。环(即阴极)的长度为1、3、5、10和20毫米。在蛋清中,通过改变20 W下每个阴极中导线的长度(即阳极; 1、3、5、10、20和40 mm)来进行凝固研究。分析了凝固时间和部位。在兔子中,使用20毫米阴极和10毫米阳极消融肾动脉。结果:在蛋清研究中,凝血时间成比例增加,并且取决于阴极和阳极的长度(P <.05)。 Coagula在阳极处发展成1毫米阴极的3毫米突起,3毫米阴极的5毫米突起,5毫米阴极的5毫米突起,10毫米突起用于10毫米阴极,对于20毫米阴极为20毫米突起。在兔子中,肾动脉被成功阻塞。病理检查显示肾动脉被组织阻塞,并且存在具有纤维化,炎症和完整的内部弹性薄层的坏死动脉壁。结论:射频电极导管/导线系统成功凝结了蛋白并阻塞了兔肾动脉。

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