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评估铥光纤激光导致光纤退化的相关因素。

Assessment of Factors Involved in Laser Fiber Degradation with Thulium Fiber Laser.

机构信息

Sorbonne Université, GRC n°20, Groupe de Recherche Clinique sur la Lithiase Urinaire, Hôpital Tenon, Paris, France.

Sorbonne Université, Service d'Urologie, AP-HP, Hôpital Tenon, Paris, France.

出版信息

J Endourol. 2022 May;36(5):668-673. doi: 10.1089/end.2021.0387. Epub 2021 Dec 29.

Abstract

To assess the effect of various factors on laser fiber tip degradation with the thulium fiber laser (Tm-fiber): fiber stripping, adjustable laser settings (energy, frequency, peak power), and stone density. Two hundred seventy-three micrometer fibers were used with a 50W Tm-fiber. First, we assessed the evolution of power transmission with stripped and unstripped fibers submerged in saline. The laser was continuously activated for 5 minutes. The influence of each laser parameter (energy, frequency, and peak power) on fiber degradation was assessed by loss of power transmission and reduction of tip length. Second, we assessed the evolution of power transmission after 150 seconds of lithotripsy in a quasicontact mode against soft and hard BegoStones. The influence of lithotripsy with different laser settings on fiber degradation was assessed by loss of power transmission. Power transmission was close to 100% with stripped fibers, while a power gain appeared for unstripped fibers after 5 minutes of laser emission. Thus, only stripped laser fibers were used during the second series of experiments. Regardless of laser settings, there was a constant loss of measured power transmission after lithotripsy with a significant difference between soft and hard stones,  < 0.0001. Power transmission was 67% and 78% against hard and soft stones, respectively. While there was no influence of peak power on power output against hard stones, there was a significant one against soft stones. The main determinant of loss of power transmission during lithotripsy in contact mode with Tm-fiber is the stone density. Higher loss of power transmission occurs against hard stones than soft stones. All peak powers may be used against hard stones without a difference, while high peak power appears as an additional factor of power loss against soft stones, but this decrease will not the reach the one obtained with hard stones.

摘要

评估各种因素对铥光纤激光(Tm 光纤)光纤尖端降解的影响:光纤剥皮、可调激光设置(能量、频率、峰值功率)和结石密度。使用 273µm 光纤和 50W Tm 光纤。首先,我们评估了在盐水中浸泡的剥皮和未剥皮光纤的功率传输演变。激光连续激活 5 分钟。通过传输功率损失和尖端长度缩短来评估每个激光参数(能量、频率和峰值功率)对光纤降解的影响。其次,我们评估了在软、硬贝戈结石上以准接触模式进行 150 秒碎石后功率传输的演变。通过传输功率损失评估不同激光设置下碎石对光纤降解的影响。剥皮光纤的传输功率接近 100%,而激光发射 5 分钟后未剥皮光纤出现功率增益。因此,在第二系列实验中仅使用剥皮激光光纤。无论激光设置如何,在进行碎石后,测量的传输功率都有持续损失,软、硬结石之间存在显著差异,<0.0001。对硬石和软石的传输功率分别为 67%和 78%。虽然峰值功率对硬石的功率输出没有影响,但对软石有显著影响。在 Tm 光纤接触模式下进行碎石时,导致传输功率损失的主要因素是结石密度。与软结石相比,硬结石的传输功率损失更高。对硬结石而言,所有峰值功率都可以使用,而不会有差异,而对软结石而言,高峰值功率是功率损失的另一个因素,但这种下降不会达到硬结石的下降幅度。

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