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Laser lithotripsy with the Ho:YAG laser: fragmentation process revealed by time-resolved imaging

机译:具有HO的激光碎石:YAG激光器:通过时间分辨成像显示的碎片过程

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Improvements of endoscopic techniques have renewed the interest of urologists in laser lithotripsy in recent years. Laser energy can be easily transmitted through flexible fibers thereby enabling different surgical procedures such as cutting, coagulating and lithotripsy. The Ho:YAG laser offers multiple medical applications in Urology, among them stone fragmentation. However, the present knowledge of its fragmentation mechanism is incomplete. The objective was therefore to analyze the fragmentation process and to discuss the clinical implications related to the underlying fragmentation mechanism. The stone fragmentation process during Ho:YAG laser lithotripsy was observed by time resolved flash video imaging. Possible acoustic transient occurrence was simultaneously monitored with a PVDF-needle hydrophone. Fragmentation was performed on artificial and cystine kidney stones in water. We observed that though the fragmentation process is accompanied with the formation of a cavitation bubble, cavitation has only a minimal effect on stone fragmentation. Fragment ejection is mainly due to direct laser stone heating leading to vaporization of organic stone constituents and interstitial water. The minimal effect of the cavitation bubble is confirmed by acoustic transients measurements, which reveal weak pressure transients. Stone fragmentation with the Holmium laser is the result of vaporization of interstitial (stone) water and organic stone constituents. It is not due to the acoustic effects of a cavitation bubble or plasma formation. The fragmentation process is strongly related with heat production thereby harboring the risk of undesired thermal damage. Therefore, a solid comprehension of the fragmentation process is needed when using the different clinically available laser types of lithotripsy.
机译:内窥镜技术的改善还在近年来重新改善激光碎石术中泌尿科医生的兴趣。可以通过柔性纤维容易地传递激光能量,从而实现不同的外科手术,例如切割,凝结和碎石。 HO:YAG激光在泌尿外科提供多种医疗应用,其中包括石头碎片。然而,目前的碎片机制知识不完整。因此,目的是分析破碎过程,并讨论与潜在的碎片机制有关的临床意义。 HO的石头碎片过程:随着时间解决的闪存视频成像观察到YAG激光碎石术。通过PVDF针水电器同时监测可能的声学瞬态发生。在水中的人工和胱氨酸肾结石进行碎片化。我们观察到,虽然碎片过程伴随着空化泡沫的形成,但空化对石头碎片仅具有最小的影响。片段喷射主要是由于直接激光石加热导致有机石成分和间质水的蒸发。通过声学瞬变测量确认空化泡沫的最小效果,其揭示了弱压力瞬变。与钬激光的石头碎片是间隙(石)水和有机石材成分的蒸发结果。它不是由于空化泡沫或等离子体形成的声学效果。碎片过程与热量产生密切相关,从而含有不希望的热损坏的风险。因此,在使用不同的临床可用的激光类型的碎石尺寸时,需要对碎片过程的固体理解。

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