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双脉冲冲击波碎石术:体外和体内研究

Dual pulse shock wave lithotripsy: in vitro and in vivo study.

作者信息

Loske Achim M, Fernández Francisco, Zendejas Horacio, Paredes Miguel, Castaño-Tostado Eduardo

机构信息

Centro de Física Aplicada y Tecnología Avanzada, Universidad Nacional Autónoma de México, A.P. 1-1010, 76000 Querétaro, Querétaro, México.

出版信息

J Urol. 2005 Dec;174(6):2388-92. doi: 10.1097/01.ju.0000180416.03512.24.

Abstract

PURPOSE

We evaluated the performance of a novel dual pulse lithotriptor for extracorporeal lithotripsy.

MATERIALS AND METHODS

A piezoelectric lithotriptor was modified to produce pairs of successive (tandem) shock waves. Four kidney stone models were exposed in vitro to 500 single shock waves with a standard lithotriptor. Another set of stones was exposed 1 at a time to 250 pairs of shock waves with the tandem lithotriptor. The time delay between the first and second shock waves was increased in steps of 50 microseconds between 100 and 600 microseconds. Four stones were used per delay, ie 44 phantoms were fractured with the tandem system. Rabbits were used in vivo to demonstrate that the novel device does not produce more tissue trauma. Five rabbits were exposed to shock waves generated by the new device, 5 were treated with the standard system and 5 served as the sham treated group. Renal damage caused by the 2 systems was compared 1 week after shock wave application.

RESULTS

Enhanced fragmentation efficiency was achieved at a delay of 250 microseconds. In vivo results indicate that the dual pulse shock wave generator does not produce more kidney tissue damage.

CONCLUSIONS

Tandem lithotriptors may improve the quality and rate of stone comminution without increasing tissue damage. The device enhances cavitation induced damage to kidney stones. Extensive in vivo experiments will be important to evaluate the new design.

摘要

目的

我们评估了一种新型双脉冲碎石机用于体外冲击波碎石术的性能。

材料与方法

对一台压电碎石机进行改造,以产生成对的连续(串联)冲击波。用标准碎石机在体外对四个肾结石模型施加500次单次冲击波。另一组结石每次用串联碎石机施加250对冲击波。第一和第二次冲击波之间的时间延迟在100至600微秒之间以50微秒的步长增加。每个延迟时间使用四块结石,即使用串联系统粉碎了44个结石模型。在体内使用兔子来证明该新型设备不会产生更多的组织损伤。五只兔子暴露于新设备产生的冲击波下,五只兔子用标准系统治疗,五只作为假治疗组。在施加冲击波一周后比较两种系统引起的肾损伤。

结果

在250微秒的延迟时实现了更高的碎石效率。体内结果表明双脉冲冲击波发生器不会产生更多的肾组织损伤。

结论

串联碎石机可以提高结石粉碎的质量和速度,而不会增加组织损伤。该设备增强了空化对肾结石的损伤作用。广泛的体内实验对于评估这种新设计很重要。

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