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使用带有可移动光纤的新型血管成形术导管,Nd:YAG激光照射对正常和病变主动脉组织的热效应及组织学变化:一项体外评估。

Thermal effects and histologic changes from Nd:YAG laser irradiation on normal and diseased aortic tissue using a novel angioplasty catheter with a mobile optical fiber: an in vitro assessment.

作者信息

Weber H, Enders S, Hessel S

机构信息

Division of Cardiology, Hospital Munich-Bogenhausen, Munich, Germany.

出版信息

Angiology. 1991 Aug;42(8):597-606. doi: 10.1177/000331979104200801.

Abstract

Although various laser angioplasty devices are currently being examined, thermal damage and perforation of the vessel wall remains the major acute complication of vascular laser recanalization. Consequently, the aim of this study was to investigate the thermal effects and histologic changes from laser irradiation (Nd:YAG, 1064 nm) on normal and diseased aortic tissue using a novel angioplasty device. During laser emission the coaxially guided optical fiber tip was positioned in reference to the end hole of the metallic capped probe as follows: (1) at the end hole (metal-cap position), (2) protruding 10 mm from that end hole (bare-fiber position), (3) withdrawn 5 mm into the metal cap's lumen (hot-tip position). In total, 96 laser impacts (25 joule: 5 W, 5 s, each) were produced on normal and atherosclerotic aorta in air through a 0.2-mm-core-diameter silica quartz fiber, with direct contact on the intimal surface of the target tissue by both the fiber and the metal cap and by either the fiber or the metal cap (n = 32 each). Tissue temperature was measured by means of special sensors positioned opposite the irradiated intimal spot in direct contact with the adventitial surface. Morphohistologic evaluation of lesions was performed and injury indexes were determined.

摘要

尽管目前正在对各种激光血管成形术设备进行研究,但血管壁的热损伤和穿孔仍然是血管激光再通的主要急性并发症。因此,本研究的目的是使用一种新型血管成形术设备,研究激光照射(钕:钇铝石榴石,1064纳米)对正常和病变主动脉组织的热效应和组织学变化。在激光发射期间,同轴引导的光纤尖端相对于金属帽探头的端孔定位如下:(1)在端孔处(金属帽位置),(2)从该端孔突出10毫米(裸光纤位置),(3)缩进金属帽内腔5毫米(热尖端位置)。总共通过0.2毫米芯径的石英光纤在空气中对正常和动脉粥样硬化主动脉产生96次激光冲击(每次25焦耳:5瓦,5秒),光纤和金属帽与目标组织的内膜表面直接接触,或者光纤或金属帽单独接触(每种情况n = 32)。通过与外膜表面直接接触并位于与照射内膜点相对位置的特殊传感器测量组织温度。对病变进行形态组织学评估并确定损伤指数。

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