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Plaque Ablation by Excimer Laser Irradiation Using a Movable Energy-Transmitting Device

机译:使用可移动的能量传输设备通过准分子激光辐照进行斑块消融

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摘要

During the past 2 years, excimer laser energy has been shown to provide a highly suitable type of atherosclerotic plaque ablation, especially in small-diameter vessels such as coronary or crural arteries. Nevertheless, transmission of far-ultraviolet pulsed laser power has remained a major problem in animal studies and clinical trials.In an attempt to solve this problem, we constructed an energy-transmitting device for use with a Lambdaphysics EMG 102 excimer laser. The transmission system, which was housed in a rigid articulated arm, allowed movement in all directions and rotation along the long axis, thus permitting easy handling and guiding of the laser beam in the operating field. To test whether this device could deliver enough energy to remove atherosclerotic plaques within a period that would meet the requirements for intraoperative use, we obtained fresh human cadaver coronary arteries both with and without atherosclerotic disease, and irradiated them vertically and coaxially. A power meter was used to determine the effective amount of energy delivered at the distal end of each vessel. Energy densities up to 3 J/cm2/pulse were obtained, owing to energy focussing within the transmitting device. At 5 Hertz (Hz), tissue ablation consisted of approximately 20 μm/pulse. Areas of normal vascular tissue, as well as fibrohyalinous and lipid plaque components, were promptly ablated. Macroscopically, the “lasered holes” appeared well-circumscribed, with clear-cut surfaces and no carbonization. Light microscopy revealed no thermal damage to the boundary tissue.With this new energy-transmitting device, the surgeon can use excimer laser irradiation intraoperatively. There is no significant loss of energy between the generator and the tip, and energy densities of 3 J/cm2/pulse are available for sufficient plaque removal. >(Texas Heart Institute Journal 1987; 14:47-52)
机译:在过去的两年中,已证明准分子激光能量可提供非常适合的动脉粥样硬化斑块消融类型,尤其是在小直径血管(例如冠状动脉或冠状动脉)中。尽管如此,远紫外脉冲激光功率的传输仍然是动物研究和临床试验中的主要问题。为了解决这个问题,我们构造了一种能量传输设备,用于Lambdaphysics EMG 102准分子激光器。传输系统安装在刚性的铰接臂中,可以在所有方向上移动并可以沿长轴旋转,因此可以在操作现场轻松处理和引导激光束。为了测试该设备是否可以在满足术中使用要求的时间内释放足够的能量来去除动脉粥样硬化斑块,我们获得了有或没有动脉粥样硬化疾病的新鲜人尸体冠状动脉,并垂直和同轴地对其进行了照射。功率计用于确定在每个血管远端输送的有效能量。由于能量集中在发射装置中,因此获得了高达3 J / cm 2 /脉冲的能量密度。在5赫兹(Hz)时,组织消融约为20μm/脉冲。正常血管组织区域以及纤维透明质和脂质斑块成分均被迅速消融。宏观上看,“激光孔”的边界很好,表面清晰,没有碳化。光学显微镜显示对边界组织没有热损伤。有了这种新的能量传输装置,外科医生可以在手术中使用准分子激光照射。发生器和尖端之间没有明显的能量损失,并且可以使用3 J / cm 2 /脉冲的能量密度来充分去除斑块。 >(《德州心脏病研究所杂志1987; 14:47-52)

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