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Comparison of Detachable and Tapered Fiber Optic Tips for use in Thulium Fiber Laser Lithotripsy

机译:用于纤维激光碎石尺寸的可拆卸和锥形光纤尖端的比较

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The Thulium fiber laser (TFL) has recently been proposed as an alternative to the Holmium:YAG laser for lithotripsy. The TFL's Gaussian spatial beam profile provides higher power transmission through smaller optical fibers with reduced proximal fiber tip damage, and improved saline irrigation and flexibility through the ureteroscope. However, distal fiber tip damage may still occur during stone fragmentation, resulting in disposal of the entire fiber after the procedure. A novel design for a short, detachable, distal fiber tip that can fit into an ureteroscope's working channel is proposed. A prototype, twist-lock, spring-loaded mechanism was constructed using micromachining methods, mating a 150-μm-core trunk fiber to 300-μm-core fiber tip. Optical transmission measuring 80% was observed using a 30 mJ pulse energy and 500 μs pulse duration. Ex vivo human calcium oxalate monohydrate urinary stones were vaporized at an average rate of 187 μg/s using 20 Hz modulated 50% duty cycle five pulse packets. The highest stone ablation rates corresponded to highest fiber tip degradation, thus providing motivation for use of detachable and disposable distal fiber tips during lithotripsy. The 1-mm-outer-diameter prototype functioned comparable to previously tested tapered fiber tips, and the novel design shows promise for potential integration into miniaturized flexible ureteroscopes.
机译:最近已经提出了纤维激光器(TFL)作为钬:用于碎石的YAG激光器的替代品。 TFL的高斯空间梁轮廓通过具有减少近端纤维尖端损坏的较小光纤,提供更高的电力传输,并通过输尿管镜改善盐水灌溉和柔韧性。然而,在石头碎片期间仍然可能发生远端纤维尖端损坏,从而导致过程后处理整个纤维。提出了一种新颖的设计,可以适合能够装配到输尿管检查的工作通道的短,可拆卸的远端纤维尖端。使用微机械化方法构建原型,扭锁,弹簧加载机构,将150μm芯躯干纤维配合到300μm芯纤维尖端。使用30MJ脉冲能量和500μs脉冲持续时间观察测量80%的光学传输。使用20Hz调制50%占空比五脉冲分组,以287μg/ s的平均速率蒸发离体人氧化物一水合物尿石。最高的石头消融率对应于最高纤维尖端劣化,从而提供用于在碎石尺寸期间使用可拆卸和一次性远端纤维尖端的动机。具有与先前测试的锥形纤维提示相当的1毫米外径原型功能,并且新颖的设计表明潜在的融合到小型化柔性输尿管镜中的承诺。

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