钬- yag激光器与铥光纤激光器体外温度变化的比较。

0 UROLOGY & NEPHROLOGY
Vaibhavkumar Patel, Kshitij Raghuvanshi, Krushnadevsinh Jadeja, Rajeev Chaudhari
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引用次数: 0

摘要

目的:评价和比较钬激光和铥光纤激光(TFL)对输尿管和肾实质的温度升高对其安全性的影响。方法:采用室内实验方法,分别在室外环境下,在10cm3透明试管中发射钬激光和TFL后,在生理盐水容器中测量温度的升高。结果:在25°C静水的10cc试管中,添加钬和TFL的温度升高取决于烧制时间,保持功率恒定。连续燃烧10秒、20秒、30秒,温度分别上升到摄氏35.1度、42.7度、53.2度。使用TFL时,温度分别达到38.3、46.8、55.4℃。两种激光器的功率都保持在10w。当试管浸泡在水容器中时,温升相对较低。灌溉后甚至更低。结论:静水中30秒的烧制时间,温度上升达到危险水平,几乎相当于钬和TFL。因此,在RIRS和输尿管镜中使用激光时,发射时间不应超过20秒,并需要充分的冲洗以防止对组织的损伤。此外,温度的上升几乎相当于钬和TFL;因此,TFL可以安全地用于泌尿生殖系统(GU)任何部位的激光碎石。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of Temperature Changes Between Holmium-YAG Laser and Thulium Fiber Laser in an In Vitro Setting.

Objective: We aimed to evaluate and compare the rise in the temperature for the safety of the ureter and kidney parenchyma when firing the holmium laser and the thulium fiber laser (TFL).

Methods: We performed a laboratory experiment to measure the rise in temperature upon firing holmium laser and a TFL in a 10 cm3 transparent test tube in an outdoor environment and then in a container with normal saline.

Results: In a 10 cc test tube with static water at 25°C, the rise in temperature with holmium and TFL depends on the firing time, keeping power constant. On continuous firing for 10, 20, and 30 seconds, the temperature rose to 35.1, 42.7, and 53.2°C with holmium. The temperature went up to 38.3, 46.8, and 55.4°C when TFL was used. The power was kept at 10 W for both types of lasers. The temperature rise was relatively low when the test tube was immersed in a water container. It was even lower with irrigation.

Conclusion: The rise in the temperature reaches to hazardous level in static water with a firing time of 30 seconds, which is almost equivalent to holmium and TFL. Thus, while using lasers in RIRS and ureteroscopy, the firing time should not exceed 20 seconds and adequate irrigation is required to prevent damage to the tissues. Also, the rise in temperature was almost equivalent to holmium and TFL; hence, TFL can be safely used in laser lithotripsy in any part of the genitourinary (GU) system.

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