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首页> 外文期刊>Lasers in surgery and medicine >Laser treatment of leg veins: Physical mechanisms and theoretical considerations.
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Laser treatment of leg veins: Physical mechanisms and theoretical considerations.

机译:激光治疗腿部静脉:物理机制和理论方面的考虑。

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BACKGROUND AND OBJECTIVES: A discussion of laser treatment of leg veins is based on a review of the literature, theoretical analysis, and the clinical experiences of the authors. Theoretical computations are discussed within the context of clinical observations. STUDY DESIGN/MATERIALS AND METHODS: A Monte Carlo model is used to examine volumetric heat production, fluence rate, and temperature profiles in blood vessels at 1,064 and 532 nm wavelengths with various beam diameters, vessel diameters, and pulse durations. RESULTS: Clinical observations, Monte Carlo results, and a review of the literature suggest that longer wavelengths and longer pulses durations favor vessel contraction over intraluminal thrombosis. Monte Carlo simulations show that longer wavelengths are more likely to uniformly heat the vessel compared to highly absorbing wavelengths. Methemoglobin production causes deeply penetrating wavelengths to generate more volumetric heat for the same input radiant exposure. CONCLUSIONS: Clinical observations and models support the role of long wavelengths and long pulses in optimal clearance of most leg telangiectasias.
机译:背景和目的:讨论激光治疗腿部静脉是基于回顾理论分析和文献作者的临床经验。计算的上下文中进行了讨论临床观察。方法:蒙特卡罗模型是用于检查体积热生产,影响速度在1064年的血管在温度资料和532 nm波长不同的光束直径、血管直径和脉冲持续时间。结果:临床观察,蒙特卡洛结果,并作文献之回顾长波长和脉冲时间支持血管收缩管腔内的血栓形成。表明,长波长更容易均匀加热容器相比,高度吸收波长。使深深穿透波长产生更多的体积相同的输入辐射热量曝光。模型支持长波长和的作用长脉冲最优间隙的腿telangiectasias。

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