首页> 外文期刊>Journal of endourology >Image Distortion During Flexible Ureteroscopy: A Laboratory Model Comparing Super Pulsed Thulium Fiber Laser vs High-Power Ho:YAG Laser
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Image Distortion During Flexible Ureteroscopy: A Laboratory Model Comparing Super Pulsed Thulium Fiber Laser vs High-Power Ho:YAG Laser

机译:输尿管软镜检查过程中的图像失真:比较超脉冲铥光纤激光器与高功率 Ho:YAG 激光器的实验室模型

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Purpose: Digital ureteroscopes employ “chip-on-the-tip” technology that allows for significant improvement in image resolution. However, image distortion often occurs during laser lithotripsy owing to acoustic wave production. We sought to compare image distortion using different laser power settings and distances from the laser fiber tip to the scope for the Super Pulsed Thulium Fiber (SPTF) laser and high-power Holmium:YAG (Ho:YAG) laser.Materials and Methods: Ureteroscopy was simulated using a silicon kidney-ureter-bladder model fitted with a 12F/14F access sheath and the Lithovue? (Boston Scientific), disposable digital flexible ureteroscope. At defined laser parameters (10, 20, 30 and 40 W, short pulse), a 200-μm laser fiber was slowly retracted toward the tip of the ureteroscope during laser activation. Image distortion was identified, and distance from the laser tip to the scope tip was determined. Data from the two lasers were compared utilizing t-tests.Results: After controlling for frequency, power, and laser mode, utilizing 1.0 J of energy was significantly associated with less feedback than 0.5 J (?0.091 mm, p ≤ 0.05). Increased power was associated with larger feedback distance (0.016 mm, p ≤ 0.05); however, increase in frequency did not have a significant effect (?0.001 mm, p = 0.39). The SPFT laser had significantly less feedback when compared with all Holmium laser modes.Conclusions: Increased total power results in image distortion occurring at greater distances from the tip of the ureteroscope during laser activation. Image distortion occurs further from the ureteroscope with Ho:YAG laser than with SPTF fibers at the same laser settings. In clinical practice, the tip of the laser fiber should be kept further away from the tip of the scope during ureteroscopy as the power increases as well as when utilizing the Ho:YAG system compared with the SPTF laser platform. The SPTF laser may have a better safety profile in terms of potential scope damage.
机译:目的:数字输尿管镜采用“尖端芯片”技术,可显着提高图像分辨率。然而,由于声波的产生,在激光碎石过程中经常发生图像失真。我们试图比较使用不同的激光功率设置以及从激光光纤尖端到超脉冲铥光纤 (SPTF) 激光器和高功率钬:YAG (Ho:YAG) 激光器的示波器的图像失真。材料和方法:使用装有 12F/14F 通路鞘和 Lithovue?(Boston Scientific),一次性数字输尿管软镜。在规定的激光参数(10、20、30 和 40 W,短脉冲)下,在激光激活过程中,200 μm 激光光纤缓慢缩回输尿管镜尖端。识别图像失真,并确定从激光尖端到示波器尖端的距离。使用t检验比较了来自两个激光器的数据。结果:在控制频率、功率和激光模式后,利用 1.0 J 的能量与低于 0.5 J (?0.091 mm, p ≤ 0.05) 的反馈显著相关。功率增加与更大的反馈距离相关(0.016 mm,p ≤ 0.05);然而,频率的增加没有显著影响(?0.001 mm,p = 0.39)。与所有钬激光模式相比,SPFT激光的反馈明显更少。结论:在激光激活过程中,总功率的增加会导致距离输尿管镜尖端更远的图像失真。在相同的激光设置下,使用 Ho:YAG 激光器比使用 SPTF 光纤时输尿管镜的图像失真发生得更远。在临床实践中,随着功率的增加,以及与 SPTF 激光平台相比,使用 Ho:YAG 系统时,输尿管镜检查期间激光光纤的尖端应远离内窥镜尖端。SPTF 激光器在潜在的示波器损坏方面可能具有更好的安全性。

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