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输尿管镜检查期间激光功率和冲洗速率的热安全边界:使用钬激光的猪体内评估

Thermal Safety Boundaries for Laser Power and Irrigation Rate During Ureteroscopy: In Vivo Porcine Assessment With a Ho:YAG Laser.

作者信息

Marom Ron, Dau Julie J, Hall Timothy L, Ghani Khurshid R, Louters Marne M, Kim Hyung Joon, Khajeh Nikta Rezakahn, Roberts William W

机构信息

Department of Urology, University of Michigan, Ann Arbor, MI.

Department of Urology, University of Michigan, Ann Arbor, MI.

出版信息

Urology. 2023 Oct;180:81-85. doi: 10.1016/j.urology.2023.07.014. Epub 2023 Jul 22.

Abstract

OBJECTIVE

To map thermal safety boundaries during ureteroscopy (URS) with laser activation in two in vivo porcine subjects to better understand the interplay between laser power, irrigation rate, and fluid temperature in the collecting system.

METHODS

URS was performed in two in vivo porcine subjects with a prototype ureteroscope containing a thermocouple at its tip. Up to 6 trials of 60 seconds laser activation were carried out at each selected power setting and irrigation rate. Thermal dose was calculated for each trial, and laser power-irrigation rate parameter pairs were categorized based on number of trials that exceeded a thermal dose of 120 equivalent minutes.

RESULTS

The collecting fluid temperature was increased with greater laser power and slower irrigation rate. In the first porcine subject, 25 W of laser power could safely be applied if irrigation was at least 15 mL/min, and 48 W with at least 30 mL/min. Intermediate values followed a linear curve between these bounds. For the second subject, where the calyx appeared larger, 15 W laser power required 9 mL/min irrigation, 48 W required 24 mL/min, and intermediate points also followed a near-linear curve.

CONCLUSION

This study validates previous bench research and provides a conceptual framework for selection of safe laser lithotripsy settings and irrigation rates during URS with laser lithotripsy. Additionally, it provides insight and guidance for future development of thermal mitigation strategies and devices.

摘要

目的

在两只活体猪身上进行输尿管镜检查(URS)并激活激光,绘制热安全边界,以更好地理解激光功率、冲洗速率和集合系统中流体温度之间的相互作用。

方法

在两只活体猪身上进行输尿管镜检查,使用一种尖端带有热电偶的原型输尿管镜。在每个选定的功率设置和冲洗速率下,进行多达6次每次60秒的激光激活试验。计算每次试验的热剂量,并根据超过120等效分钟热剂量的试验次数对激光功率 - 冲洗速率参数对进行分类。

结果

随着激光功率增加和冲洗速率减慢,收集液温度升高。在第一只猪身上,如果冲洗速率至少为15毫升/分钟,则可安全施加25瓦激光功率;如果冲洗速率至少为30毫升/分钟,则可安全施加48瓦激光功率。中间值在这些界限之间呈线性曲线。对于第二只猪,其肾盏看起来更大,15瓦激光功率需要9毫升/分钟的冲洗速率,48瓦需要24毫升/分钟,中间点也呈近似线性曲线。

结论

本研究验证了先前的台架研究,并为在激光碎石术的输尿管镜检查期间选择安全的激光碎石术设置和冲洗速率提供了概念框架。此外,它为热缓解策略和设备的未来发展提供了见解和指导。

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