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用于 Ho:YAG 和 Er:YAG 激光辐射水下组织消融的侧向发射光纤装置

Side-Firing Fiber Device for Underwater Tissue Ablation with Ho:YAG and Er:YAG Laser Radiation.

作者信息

Fo Hn O, Pratisto H S, Ko Nz F, Ith M, Altermatt H J, Frenz M, Weber H P

出版信息

J Biomed Opt. 1998 Jan;3(1):112-22. doi: 10.1117/1.429868.

Abstract

A side-firing fiber device for arthroscopic Ho:YAG (λ=2.12 μm) and Er:YAG (λ=2.94 μm) laser applications was designed and constructed. The fiber delivery instrument consisted of a zirconium fluoride (ZrF4) fiber equipped with a coaxially mounted short end-piece of low OH- quartz fiber polished at an angle of 30 deg. The dynamics and depth of the vapor channel in water and the amplitude of pressure transients associated with the collapse of the vapor channel were measured for pulse energies up to 1 J (Ho:YAG) and 200 mJ for the Er:YAG laser (pulse duration τ=400 μs), respectively. To assess the feasibility of the side-firing fiber delivery instrument, the ablation efficiency and laser-induced damage in poly(acylamide) and meniscal tissue were determined after Ho:YAG and Er:YAG laser ablation. © 1998 Society of Photo-Optical Instrumentation Engineers.

摘要

设计并制造了一种用于关节镜 Ho:YAG(λ = 2.12μm)和 Er:YAG(λ = 2.94μm)激光应用的侧向发射光纤装置。光纤传输器械由一根氟化锆(ZrF4)光纤组成,该光纤配备有同轴安装的低 OH 石英光纤短端头,其抛光角度为 30 度。分别测量了 Ho:YAG 激光脉冲能量高达 1J 和 Er:YAG 激光脉冲能量高达 200mJ(脉冲持续时间 τ = 400μs)时,在水中蒸汽通道的动力学和深度以及与蒸汽通道坍塌相关的压力瞬变幅度。为评估侧向发射光纤传输器械的可行性,在 Ho:YAG 和 Er:YAG 激光消融后,测定了聚(酰胺)和半月板组织中的消融效率和激光诱导损伤。© 1998 年光电仪器工程师协会。

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