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Thulium Fiber Laser Lithotripsy using a Muzzle Brake Fiber Tip

机译:使用枪口制动纤维尖端纤维激光碎石尺寸

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The Thulium fiber laser (TFL) is being explored as an alternative to Holmium:YAG laser for lithotripsy. TFL beam profile allows coupling of higher power into smaller fibers than multimode Holmium laser beam, without proximal fiber tip degradation. A smaller fiber provides more space in ureteroscope working channel for increased saline irrigation and allows maximum ureteroscope flexion. 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 retropulsion. In this study, a "fiber muzzle brake" was tested for reducing fiber burnback and stone retropulsion. TFL lithotripsy studies were performed at 1908 nm, 35 mJ, 500 μs, and 300 Hz using a 100-μm-core fiber. The optimal stainless steel muzzle brake tip tested consisted of a 1-cm-long, 560-μm-OD, 360-μm-ID tube with 275-μm thru hole located 250-μm from the distal end. The fiber tip was recessed a distance of 500 urn. 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 (n=10), without distal fiber tip burnback. Reduction in stone phantom retropulsion distance by 50% and 85% was observed when using muzzle brake tips versus 100-μm-core bare fibers and hollow steel tip fibers. The muzzle brake fiber tip provided efficient stone ablation, reduced stone retropulsion, and minimal fiber degradation during TFL lithotripsy.
机译:纤维激光器(TFL)正在探索作为钬的替代品:用于碎石的YAG激光器。 TFL梁轮廓允许将更高功率的耦合到比多模钬激光束的较小纤维,而没有近端光纤尖端劣化。较小的纤维为输尿管镜工作通道提供更多空间,以增加盐水灌溉,并允许最大输尿管镜屈曲。然而,随着纤维直径的降低,远端纤维尖端烧坏增加。以前的研究利用中空钢护套围绕凹陷远端纤维尖端减少纤维烧毁,而是增加了再循环。在该研究中,测试了“纤维孔制动器”以减少纤维烧制和石质回流。使用100μm芯纤维在1908nm,35 mj,500μs和300 hz下进行Tfl碎石术研究。最佳的不锈钢喷嘴制动尖端测试由1-cm-long,560μm-od,360μm-id管组成,360μm孔,从远端位于250微米的250微米。纤维尖端凹陷的距离为500瓮。石体幻影回归,纤维尖端圈回和草酸钙石烧蚀研究进行了exVivo。质量为40±4毫克和4毫升直径的小石头在25±4 s(n = 10)中的1.5mm筛中烧蚀,没有远端纤维尖端烧掉。当使用枪制动器尖端与100μm芯裸纤维和中空钢尖端纤维时,观察到石模谱距离的降低50%和85%。枪口制动纤维尖端提供高效的石头烧蚀,降低的石质回流,以及在TFL型岩石中的最小纤维降解。

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