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In vitro evaluation of scopesafe fibers and the scope guardian sheath in prevention of ureteroscope endolumenal working damage

机译:示波器安全纤维和示波器保护套在体外预防输尿管镜腔内工作损伤的体外评估

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Background and Purpose: Ureteroscope breakage is commonly related to laser fiber damage. Often, the damage is mechanical and not energy related. As such, we evaluated a novel laser fiber and sheath system in preventing mechanical ureteroscope damage during fiber insertion. Materials and Methods: We assessed 200-μm/272/3-μm laser fibers with the laser sheath in a flexible ureteroscope. Diminishment of active deflection and irrigation flow rates were compared with a standard laser fiber alone. Eight nonassembled working channel components were tested in a 0-degree/90-degree/210-degree deflection model. After insertion cycles, external and endolumenal damage to the working channel were classified. We also tested the sheath system in a 0-degree/90-degree/210- degree deflection model for fiber failure and laser damage. Results: In all test trials with the sheath and for standard laser fibers in the 0-degree model, there were no channel perforations or damage. With standard laser fibers, in the 210-degree model, superficial scratches and demarcated abrasions were visible after 10 and 60 to 70 insertions for the 273-μm laser fiber and after 30 insertions (superficial scratches) for the 200-μm laser fiber. In the 90-degree model, superficial scratches occurred after 20 insertions for the 273-μm fibers and after 40 insertions for the 200-μm laser fibers. No demarcated abrasions were seen after 100 insertions. In the 210-degree model, there was one perforation with the 272-μm fiber, but none with 200-μm fiber. There were no fiber failures with sheath use; however, the sheath did not prevent laser energy damage. The laser sheath resulted in a 4.7-degree/3.8-degree (1.2%/1.5%) diminishment in deflection (up/down) for the 200 μm and a 3.5-degree/4.3-degree (1.8%/1.5%) diminishment for 272-μm laser fiber compared with standard 200/272-μm laser fiber. Irrigation flow was diminished with the sheath on both the 200-μm and 272-μm laser fiber by 28.7% and 32.6%, respectively. Conclusion: The Scope Guardian Sheath prevented mechanical working channel damage with minimal diminishment of deflection and irrigation flow.
机译:背景与目的:输尿管镜破裂通常与激光光纤损坏有关。通常,损坏是机械性的,与能量无关。因此,我们评估了一种新型的激光纤维和鞘管系统,以防止在纤维插入过程中对机械输尿管镜造成损害。材料和方法:我们使用柔性输尿管镜中的激光护套评估了200-μm/ 272 /3-μm激光纤维。主动偏转和灌溉流速的降低与单独的标准激光光纤进行了比较。在0度/ 90度/ 210度挠度模型中测试了八个未组装的工作通道组件。插入周期后,对工作通道的外部和腔内损伤进行分类。我们还在0度/ 90度/ 210度挠度模型中测试了护套系统的光纤故障和激光损伤。结果:在所有使用护套和0度模型中的标准激光纤维的测试中,均未发现通道穿孔或损坏。使用标准激光光纤,在210度模型中,对于273μm激光光纤插入10和60至70至70个插入之后,对于200μm激光光纤插入30次(表面刮擦)之后,可以看到表面划痕和划定的擦伤。在90度模型中,对于273-μm光纤,在插入20次后,对于200-μm激光光纤,在插入40次后,发生了表面刮擦。插入100次后未见划界擦伤。在210度模型中,272μm的光纤有一个穿孔,而200μm的光纤没有一个穿孔。使用护套不会导致光纤故障。但是,护套不能防止激光能量损坏。激光护套导致200μm的偏转(向上/向下)减小4.7度/3.8度(1.2%/ 1.5%),而导致200μm的偏转减小3.5度/4.3度(1.8%/ 1.5%)。 272-μm激光光纤与标准200 /272-μm激光光纤相比。使用200μm和272μm激光光纤上的护套,灌溉流量分别减少了28.7%和32.6%。结论:Scope Guardian护套通过最小化偏转和灌溉流量的方式防止了机械工作通道的损坏。

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