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“热尖端”:激光血管再通的另一种方法。

"Hot tip": another method of laser vascular recanalization.

作者信息

Abela G S, Fenech A, Crea F, Conti C R

出版信息

Lasers Surg Med. 1985;5(3):327-35. doi: 10.1002/lsm.1900050315.

Abstract

UNLABELLED

This study is a preliminary report evaluating the use of laser radiation to heat a metal-capped fiber for arterial recanalization. The method was compared to the currently used bare-ended fiber for recanalization of occluded vessels. The model used was a human coronary artery xenograft transplanted in the femoral artery of the dog. At 4 weeks following the transplantation, laser recanalization was attempted using the heated metal probe ("hot tip") in five arteries and the bare fiber in another five arteries.

RESULTS

  1. Angiography demonstrated recanalization in all five arteries treated with the "hot tip" and three of the five arteries treated with the bare fiber. 2) Only one perforation occurred with the "hot tip," whereas three perforations occurred with the bare fiber. 3) The larger metal cap was capable of creating a wider channel in the occluded arterial segment. Although the trend favored the heated metal cap in terms of recanalization and less perforation than the bare fiber, the total number of experiments were not adequate to demonstrate statistical significance. Microscopic examination of the vessels recanalized by either technique was similar. Characteristic charring at the recanalization site was seen regardless of the technique used. These observations suggest that the effect of direct laser radiation on plaques is predominantly a thermal effect. Although these results would suggest utilization of a metal-capped fiber for vascular recanalization, more studies need to be done to confirm these preliminary findings.
摘要

未标注

本研究是一份初步报告,评估使用激光辐射加热金属帽光纤进行动脉再通的情况。该方法与目前用于闭塞血管再通的裸端光纤进行了比较。所使用的模型是移植到狗股动脉中的人冠状动脉异种移植物。移植后4周,在五条动脉中使用加热的金属探头(“热尖端”)尝试进行激光再通,在另外五条动脉中使用裸光纤进行尝试。

结果

1)血管造影显示,用“热尖端”治疗的所有五条动脉以及用裸光纤治疗的五条动脉中的三条实现了再通。2)“热尖端”仅发生了一处穿孔,而裸光纤发生了三处穿孔。3)较大的金属帽能够在闭塞的动脉段中形成更宽的通道。尽管在再通方面以及与裸光纤相比穿孔较少方面,趋势有利于加热的金属帽,但实验总数不足以证明具有统计学意义。对通过这两种技术再通的血管进行显微镜检查结果相似。无论使用何种技术,在再通部位均可见典型的炭化现象。这些观察结果表明,激光直接辐射对斑块的作用主要是热效应。尽管这些结果表明可使用金属帽光纤进行血管再通,但仍需要更多研究来证实这些初步发现。

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