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钬激光和铥光纤激光的温度变化,包括先进碎裂脉冲(AFP)技术:一项实验分析。

Temperature variations with Ho: YAG and thulium fiber lasers, including advanced fragmentation pulse (AFP) technology: an experimental analysis.

作者信息

Gadzhiev Nariman, Aloyan Aram, Gorgotsky Ivan, Piven Nikolai, Martov Alexey, Gauhar Vineet, Güven Selcuk

机构信息

Saint-Petersburg State University Hospital, Saint Petersburg, Russia.

First Pavlov State Medical University of Saint-Petersburg, Saint-Petersburg, Russia.

出版信息

World J Urol. 2025 May 16;43(1):309. doi: 10.1007/s00345-025-05675-5.

Abstract

PURPOSE

Recent developments in high-power systems and the super-pulsed thulium fiber laser (TFL) promise enhanced efficiency but raise concerns about thermal safety. This study examines the intrarenal temperature profiles of Ho: YAG and TFL systems including the advanced fragmentation pulse (AFP) mode under simulated conditions.

METHODS

A custom-designed kidney and ureter model was used to measure intrarenal temperature changes during laser activation. Real-time temperature data were recorded via thermocouples placed in collecting system. Results were analyzed to compare water temperature increases with the safety threshold of 43 °C.

RESULTS

At an irrigation flow rate of 23 mL/min and an initial water temperature of 22 ± 1 °C, WTIs for all laser systems remained below the safety threshold of temperature increase (STTI) during 60 s of laser activation. Ho: YAG consistently demonstrated the lowest WTIs, whereas TFL in AFP mode showed higher WTIs comparable to Ho: YAG but lower compared to TFL standard mode. Across all settings, WTIs were highest in the pelvis due to proximity to the laser fiber, with lower values in the upper and lower poles. The rapid temperature rise observed in the first 10-15 s was followed by a slower, steady increase. These findings confirm that with proper irrigation, even high-power laser lithotripsy systems, including TFL with AFP, operate within thermally safe limits.

CONCLUSION

This study confirms that both Ho: YAG and TFL systems, including AFP mode, remain thermally safe with adequate irrigation (23 mL/min) during 60-second activation sessions.

摘要

目的

高功率系统和超脉冲铥光纤激光器(TFL)的最新进展有望提高效率,但引发了对热安全性的担忧。本研究在模拟条件下检查了钬激光(Ho:YAG)和TFL系统(包括先进破碎脉冲(AFP)模式)的肾内温度分布。

方法

使用定制设计的肾脏和输尿管模型测量激光激活期间的肾内温度变化。通过放置在收集系统中的热电偶记录实时温度数据。分析结果以比较水温升高与43°C的安全阈值。

结果

在冲洗流速为23 mL/min且初始水温为22±1°C的情况下,所有激光系统在60秒的激光激活期间的水温升高指数(WTI)均保持在温度升高安全阈值(STTI)以下。钬激光始终显示出最低的WTI,而AFP模式下的TFL显示出与钬激光相当但低于TFL标准模式的较高WTI。在所有设置中,由于靠近激光光纤,肾盂中的WTI最高,上下极的值较低。在最初的10-15秒内观察到快速的温度上升,随后是较慢的稳定上升。这些发现证实,通过适当的冲洗,即使是高功率激光碎石系统,包括带有AFP的TFL,也能在热安全范围内运行。

结论

本研究证实,钬激光和TFL系统(包括AFP模式)在60秒的激活过程中,在充分冲洗(23 mL/min)的情况下仍保持热安全性。

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