首页> 外文会议>Photonic Therapeutics and Diagnostics II; Progress in Biomedical Optics and Imaging; vol.7, no.1 >Investigation of Stone Retropulsion as a Function of Ho:YAG Laser Pulse Dration
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Investigation of Stone Retropulsion as a Function of Ho:YAG Laser Pulse Dration

机译:随Ho:YAG激光脉冲持续时间变化的结石反冲研究

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Stone retropulsion during Ho:YAG (λ = 2.12 μm) laser lithotripsy with various pulse durations (τ_p: 250 ~ 495 μsec) was investigated. Depending on pulse energy, optical pulse durations were divided into two regimes: short pulse (250~350 μsec) and long pulse (315~495 μsec). Retropulsion distance was measured as a function of pulse energy from 0.4 J to 1.2 J. Calculus phantoms made from plaster of Paris were ablated with a free running Ho:YAG laser using various optical fibers (200, 400, 600 μm) in water. In order to examine the ablation efficiency of two different pulse durations, a single pulse was applied, and the dynamics of the recoil action of a calculus phantom was monitored using a high-speed camera. The correlation among laser-induced topography, ablation volume, and retropulsion was evaluated. Higher pulse energy and larger fibers resulted in larger ablation volume and retropulsion. At a given pulse energy, optical pulses with different durations yielded comparable ablation volumes. The shorter duration pulses induced more retropulsion than longer pulses did at the same pulse energy. Larger retropulsion with the shorter pulse is thought to be induced by higher temperature at the vapor-solid interface, subsequently resulting in faster plume ejection with higher recoil momentum. The results suggest that a longer pulse could minimize retropulsion of the stone during lithotripsy.
机译:研究了Ho:YAG(λ= 2.12μm)激光碎石术中不同脉冲持续时间(τ_p:250〜495μsec)的结石后退。根据脉冲能量的不同,光脉冲的持续时间可分为两种模式:短脉冲(250〜350μsec)和长脉冲(315〜495μsec)。根据脉冲能量在0.4 J到1.2 J之间的函数来测量后退距离。用自由运行的Ho:YAG激光在水中使用各种光纤(200、400、600μm)烧蚀巴黎石膏的微积分模型。为了检查两个不同脉冲持续时间的消融效率,应用了单个脉冲,并使用高速相机监控了微积分幻影的后坐动作的动力学。评估了激光诱导的地形,消融量和反冲之间的相关性。较高的脉冲能量和较大的纤维会导致较大的消融量和反冲。在给定的脉冲能量下,具有不同持续时间的光脉冲产生的烧蚀体积相当。在相同的脉冲能量下,持续时间较短的脉冲比较长的脉冲引起更多的反冲。人们认为,较短的脉冲会产生较大的反冲,这是由于汽-固界面处的较高温度引起的,从而导致更快的羽流喷射以及更高的反冲动量。结果表明,更长的脉冲可以在碎石术中最大程度地减少结石的后退。

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