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Holmium:yttrium-aluminum-garnet laser induced lithotripsy: in-vitro investigations on fragmentation dusting propulsion and fluorescence

机译::钇铝石榴石激光诱导碎石:碎裂起尘推进和荧光的体外研究

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摘要

The fragmentation efficiency on Bego artificial stones during lithotripsy and the propulsive effect (via video tracking) was investigated for a variety of laser settings. A variation of the laser settings (pulse energy, pulse duration, repetition rate) altered the total application time required for stone fragmentation, the stone break up time, and the propulsion. The obtained results can be used to develop lithotripsy devices providing an optimal combination of low stone propulsion and high fragmentation efficacy, which can then be evaluated in a clinical setting. Additionally, the fluorescence of human kidney stones was inspected endoscopically in vivo. Fluorescence light can be used to detect stone-free areas or to clearly distinguish calculi from surrounding tissue or operation tools.
机译:对于各种激光设置,研究了碎石过程中Bego人造石的碎裂效率和推进效果(通过视频跟踪)。激光设置的变化(脉冲能量,脉冲持续时间,重复频率)改变了碎石所需的总应用时间,碎石时间和推进力。获得的结果可用于开发碎石术设备,该设备可提供低结石推进力和高碎石效果的最佳组合,然后可在临床环境中对其进行评估。另外,在体内内窥镜检查人肾结石的荧光。荧光灯可用于检测无结石的区域或将结石与周围组织或手术工具区分开来。

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