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首页> 外文期刊>Lasers in surgery and medicine >Intraluminal laser light source and external solder: In vivo evaluation of a new technique for microvascular anastomosis.
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Intraluminal laser light source and external solder: In vivo evaluation of a new technique for microvascular anastomosis.

机译:管腔内的激光光源和外部焊接:体内评价的一种新技术微血管吻合。

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BACKGROUND AND OBJECTIVES: Current laser-assisted end-to-end anastomoses are performed by irradiating the vessel wall from outside after additional fixation with three to six sutures. These sutures are needed to provide adequate approximation of the vessel stumps. We present a new laser soldering technique that is based on an intraluminal laser light source centered in a balloon catheter, and external application of a solder. This technique was applied in vivo in order to test its feasibility under clinical conditions. STUDY DESIGN/MATERIALS AND METHODS: Seven white pigs were treated with a total of fourteen end-to-end laser-anastomoses of their saphenous arteries having outer diameters of 2 mm. The vessels were stented over an intraluminal balloon catheter, which was maximally dilated and which allowed for a precise approximation of the vascular stumps. An 808 nm diode laser was coupled into a specially designed optical fiber producing a 360 degrees radiation ring inside the balloon catheter. An indocyanine green (ICG) doped liquid albumin solder was applied on the external surface of the vascular stumps. Laser soldering was achieved by irradiating with a 808 nm laser diode for 75 seconds. Tightness of the anastomoses was evaluated by clamping the artery distal to the anastomosis for 1 hour, and patency was tested over an observation period of 3 hours, during which the animals were heparinized. Thereafter, the anastomoses were harvested for histomorphological examination. RESULTS: All anastomoses remained patent over the entire observation period. Some leakage was observed in three anastomoses, which was explained by a deviation of the illumination fiber from the center of the balloon leading to an inhomogeneous irradiation of the vessel wall. Histology revealed perfect adaptation of the vascular stumps. A segment of denaturated vascular collagen was observed, that corresponded to the irradiated, solder-covered zone. CONCLUSION: Patent, maximally dilated and well adapted microvascular anastomoses could be obtained without the need of stay sutures. A well centered laser light source is indispensable for avoiding inhomogenous welding, thus causing leakage. Lasers Surg. Med. 35:312-316, 2004. (c) 2004 Wiley-Liss, Inc.
机译:背景和目的:当前激光辅助执行端到端吻合外辐射的血管壁额外的三到六缝合固定。这些缝线需要提供足够的近似的树桩。基于一种新的激光焊接技术管腔内的激光光源集中在一个气球导管,和外部的应用程序焊料为了测试它的临床可行性条件。总共七个白色头猪被处理十四的端到端laser-anastomoses隐动脉的外直径2毫米。血管支架置放在管腔内的气囊导管,最大限度地扩张允许的精确近似血管树桩。耦合到一个特别设计的光纤产生一个360度辐射环内气球导管。掺液应用于白蛋白焊料外部表面血管树桩。焊接是通过辐射808纳米激光二极管为75秒。通过夹紧动脉吻合是评估远端吻合1小时,和开放测试一个观察段3小时,在此期间,动物被肝素化。此后,吻合是收获histomorphological考试。吻合仍在整个专利观察期。三个吻合,这解释了偏差的照明纤维气球导致非齐次的中心血管壁的辐照。显示血管的完美的适应树桩。观察胶原蛋白,这与辐照,solder-covered区。专利,最大限度地扩张和适应能获得微血管吻合不需要缝合。为避免激光光源是不可缺少的不均一的焊接,造成泄漏。激光Surg.地中海35:312 - 316,2004。Wiley-Liss公司。

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