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光纤枪口制动尖端,用于减少钬光纤激光碎石术过程中的光纤烧蚀和结石后向反射。

Fiber optic muzzle brake tip for reducing fiber burnback and stone retropulsion during thulium fiber laser lithotripsy.

机构信息

University of North Carolina at Charlotte, Department of Physics and Optical Science, 9201 University City Boulevard, Charlotte, North Carolina 28223, United States.

Carolinas Medical Center, McKay Department of Urology, 1023 Edgehill Road South, Charlotte, North Carolina 28207, United States.

出版信息

J Biomed Opt. 2017 Jan 1;22(1):18001. doi: 10.1117/1.JBO.22.1.018001.

Abstract

The experimental thulium fiber laser (TFL) is being explored as an alternative to the current clinical gold standard Holmium:YAG laser for lithotripsy. The near single-mode TFL beam allows coupling of higher power into smaller optical fibers than the multimode Holmium laser beam profile, without proximal fiber tip degradation. A smaller fiber is desirable because it provides more space in the ureteroscope working channel for increased saline irrigation rates and allows maximum ureteroscope deflection. However, distal fiber tip burnback increases as fiber diameter decreases. Previous studies utilizing hollow steel sheaths around recessed distal fiber tips reduced fiber burnback but increased stone retropulsion. A “fiber muzzle brake” was tested for reducing both fiber burnback and stone retropulsion by manipulating vapor bubble expansion. TFL lithotripsy studies were performed at 1908 nm, 35 mJ, 500 ?? ? s , and 300 Hz using a 100 - ? m -core fiber. The optimal stainless steel muzzle brake tip tested consisted of a 1-cm-long, 560 - ? m -outer-diameter, 360 - ? m -inner-diameter tube with a 275 - ? m -diameter through hole located 250 ?? ? m from the distal end. The fiber tip was recessed a distance of 500 ?? ? m . Stone phantom retropulsion, fiber tip burnback, and calcium oxalate stone ablation studies were performed ex vivo. Small stones with a mass of 40 ± 4 ?? mg and 4-mm-diameter were ablated over a 1.5-mm sieve in 25 ± 4 ?? s

摘要

实验用掺铥光纤激光(TFL)正被探索作为目前临床金标准钬:YAG 激光碎石术的替代方案。近单模 TFL 光束允许将更高的功率耦合到比多模钬激光光束轮廓更小的光纤中,而不会导致光纤尖端近端退化。较小的光纤是理想的,因为它在输尿管镜工作通道中提供了更多的空间,可增加生理盐水冲洗速度,并允许输尿管镜最大程度地偏转。然而,随着光纤直径的减小,远端光纤尖端的烧蚀会增加。以前的研究利用凹陷的远端光纤尖端周围的空心钢护套减少了光纤烧蚀,但增加了结石后向运动。通过操纵蒸汽泡膨胀,测试了“光纤枪口制动器”,以减少光纤烧蚀和结石后向运动。使用 100-μm 芯光纤在 1908nm、35mJ、500 μs 和 300Hz 下进行 TFL 碎石术研究。测试的最佳不锈钢枪口制动尖端由 1cm 长、560μm 外径、360μm 内径的管组成,管内有一个 275μm 直径的通孔,距离远端 250μm。光纤尖端缩进 500μm。在离体条件下进行了结石幻影后向运动、光纤尖端烧蚀和草酸钙结石消融研究。40±4mg 质量和 4mm 直径的小结石在 1.5mm 筛网上用 25±4s 时间被消融。

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