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首页> 外文期刊>Journal of endourology >Optimization of treatment strategy used during shockwave lithotripsy to maximize stone fragmentation efficiency.
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Optimization of treatment strategy used during shockwave lithotripsy to maximize stone fragmentation efficiency.

机译:优化冲击波碎石术中使用的治疗策略,以最大化碎石效率。

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摘要

BACKGROUND AND PURPOSE: Previous studies have demonstrated that treatment strategy plays a critical role in ensuring maximum stone fragmentation during shockwave lithotripsy (SWL). We aimed to develop an optimal treatment strategy in SWL to produce maximum stone fragmentation. MATERIALS AND METHODS: Four treatment strategies were evaluated using an in-vitro experimental setup that mimics stone fragmentation in the renal pelvis. Spherical stone phantoms were exposed to 2100 shocks using the Siemens Modularis (electromagnetic) lithotripter. The treatment strategies included increasing output voltage with 100 shocks at 12.3 kV, 400 shocks at 14.8 kV, and 1600 shocks at 15.8 kV, and decreasing output voltage with 1600 shocks at 15.8 kV, 400 shocks at 14.8 kV, and 100 shocks at 12.3 kV. Both increasing and decreasing voltages models were run at a pulse repetition frequency (PRF) of 1 and 2 Hz. Fragmentation efficiency was determined using a sequential sieving method to isolate fragments less than 2 mm. A fiberoptic probe hydrophone was used to characterize the pressure waveforms at different output voltage and frequency settings. In addition, a high-speed camera was used to assess cavitation activity in the lithotripter field that was produced by different treatment strategies. RESULTS: The increasing output voltage strategy at 1 Hz PRF produced the best stone fragmentation efficiency. This result was significantly better than the decreasing voltage strategy at 1 Hz PFR (85.8% vs 80.8%, P=0.017) and over the same strategy at 2 Hz PRF (85.8% vs 79.59%, P=0.0078). CONCLUSIONS: A pretreatment dose of 100 low-voltage output shockwaves (SWs) at 60 SWs/min before increasing to a higher voltage output produces the best overall stone fragmentation in vitro. These findings could lead to increased fragmentation efficiency in vivo and higher success rates clinically.
机译:背景与目的:先前的研究表明,治疗策略在确保冲击波碎石术(SWL)期间最大程度的碎石方面起着至关重要的作用。我们旨在在SWL中开发最佳治疗策略,以产生最大的碎石效果。材料与方法:使用体外实验装置评估了四种治疗策略,该装置模拟了肾盂中的碎石。使用Siemens Modularis(电磁)碎石机将球形石头幻像暴露于2100次电击。处理策略包括:以12.3 kV的100次电击,14.8 kV的400次电击和15.8 kV的1600次电击降低输出电压,以15.8 kV的1600次电击,14.8 kV的400次电击和12.3 kV的100次电击降低输出电压。 。升高和降低电压模型均以1和2 Hz的脉冲重复频率(PRF)运行。使用顺序筛分方法确定碎片效率,以分离小于2 mm的碎片。光纤探头水听器用于表征不同输出电压和频率设置下的压力波形。此外,使用高速相机评估碎石场中由不同处理策略产生的空化活动。结果:在1 Hz PRF下增加输出电压策略可产生最佳的碎石效率。该结果明显优于在1 Hz PFR下的降压策略(85.8%对80.8%,P = 0.017)和在2 Hz PRF下相同的策略(85.8%对79.59%,P = 0.0078)。结论:在增加到更高的电压输出之前,以60 SWs / min的速度进行100次低压输出冲击波(SWs)的预处理剂量可在体外产生最佳的整体碎石效果。这些发现可能导致体内破碎效率提高,临床上成功率更高。

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