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Proximal Fiber Tip Damage during HolmiumrYAG and Thulium Fiber Laser Ablation of Kidney Stones

机译:肾结石Hol和Laser光纤激光消融过程中近端纤维尖端损伤

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The Thulium fiber laser (TFL) is being studied as an alternative to Holmium:YAG laser for lithotripsy. TFL beam originates within an 18-μm-core thulium doped silica fiber, and its near single mode, Gaussian beam profile enables transmission of higher laser power through smaller fibers than possible during Holmium laser lithotripsy. This study examines whether TFL beam profile also reduces proximal fiber tip damage compared to Holmium laser multimodal beam. TFL beam at wavelength of 1908 nm was coupled into 105-μm-core silica fibers, with 35-mJ energy, 500-μs pulse duration, and pulse rates of 50-500 Hz. For each pulse rate, 500,000 pulses were delivered. Magnified images of proximal fiber surfaces were taken before and after each trial. For comparison, 20 single-use, 270-μm-core fibers were collected after clinical Holmium laser lithotripsy procedures using standard settings (600 mJ, 350 μs, 6 Hz). Total laser energy, number of laser pulses, and laser irradiation time were recorded, and fibers were rated for damage. For TFL studies, output power was stable, and no proximal fiber damage was observed after delivery of 500,000 pulses at settings up to 35 mJ, 500 Hz, and 17.5 W average power. In contrast, confocal microscopy images of fiber tips after Holmium lithotripsy showed proximal fiber tip degradation in all 20 fibers. The proximal fiber tip of a 105-μm-core fiber transmitted 17.5 W of TFL power without degradation, compared to degradation of 270-μm-core fibers after transmission of 3.6 W of Holmium laser power. The smaller and more uniform TFL beam profile may improve fiber lifetime, and potentially reduce costs for the surgical disposables as well.
机译:li光纤激光器(TFL)正在被研究作为碎石术的Hol:YAG激光器的替代品。 TFL光束起源于掺有18μm纤芯的silica的石英光纤,其高斯光束轮廓接近单模,与Hol激光碎石术相比,可以通过较小的光纤传输更高的激光功率。这项研究检查了与FL激光多峰光束相比,TFL光束轮廓是否也减少了近端光纤尖端损伤。将波长为1908 nm的TFL光束耦合到105μm芯的石英纤维中,能量为35 mJ,脉冲持续时间为500μs,脉冲频率为50-500 Hz。对于每个脉冲率,发送了500,000个脉冲。在每次试验之前和之后均拍摄近端纤维表面的放大图像。为了进行比较,在临床Hol激光碎石术之后,使用标准设置(600 mJ,350μs,6 Hz)收集了20条一次性使用的270μm芯纤维。记录总激光能量,激光脉冲数和激光照射时间,并评定纤维的损坏程度。对于TFL研究,输出功率是稳定的,在设置为35 mJ,500 Hz和17.5 W平均功率的设置下传递500,000个脉冲后,未观察到近端纤维损伤。相反,Hol碎石术后纤维尖端的共聚焦显微镜图像显示所有20条纤维中近端纤维尖端均发生降解。 105微米纤芯光纤的近端光纤尖端传输的TFL功率为17.5 W,而不会降低,而传输3.6瓦of激光功率的光纤则为270微米纤芯的光纤。较小且更均匀的TFL光束轮廓可以延长光纤寿命,并潜在地降低一次性手术用品的成本。

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