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Experimental setup for evaluation of cavitation effects in ESWL

机译:用于评估ESWL中空化效应的实验装置

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Cavitation is a major fracture mechanism in extracorporeal shock wave lithotripsy (ESWL). However, it can cause tissue trauma and its effects on kidney stones and surrounding tissue are not fully understood. Therefore experimental setups enabling systematic parameter studies are crucial. We developed and evaluated a testing rig comprising three measuring methods in order to examine this mechanism. Our initial evaluation of this setup based on standard components showed promising results. Primary cavitation was displayed by high-speed photography 195 μs after the shock front had passed the focal zone. The effect of different pulse repetition rates (30, 60, 90, 120 SW/min) on the extension of the cavitation area was determined. The lifetime of secondary cavitation was analysed by B-mode ultrasound imaging. In a post processing progress the images showing bubbles were compared to a reference picture for both types of cavitation and the number of pixels that changed colour was counted. Furthermore stone comminution at different pulse repetition rates (30, 60, 90, 120 SW/min) was investigated by fixed-dose fragmentation. We observed an inverse correlation of cavitation and fragmentation. As the pulse repetition rate increases, the area of primary cavitation grows whereas the fragmentation efficiency decreases. B-mode imaging showed that secondary cavitation bubbles persisted between the shocks and can serve as nuclei. The higher the pulse repetition rate is, the more of these nuclei remain and thus facilitate formation of primary cavitation. The experimental setup provides reproducible results regarding the development of primary and secondary cavitation on the one hand and the fragmentation of phantom stones on the other hand. Therefore it can be utilized to further investigate the effect of different boundary conditions and shock wave parameters on cavitation and stone comminution. The impact of different focal sound fields is subject of ongoing research.
机译:空化是体外冲击波碎石术(ESWL)的主要骨折机制。但是,它可能引起组织创伤,并且对肾结石和周围组织的影响尚不完全清楚。因此,进行系统参数研究的实验装置至关重要。我们开发并评估了一种包含三种测量方法的试验台,以检查这种机理。我们根据标准组件对该设置进行的初步评估显示出可喜的结果。冲击锋面通过聚焦区后195μs的高速摄影显示出主要的空化现象。确定了不同的脉冲重复频率(30、60、90、120 SW / min)对空化区域扩展的影响。通过B型超声成像分析二次气蚀的寿命。在后期处理过程中,将显示气泡的图像与参考图像进行了两种类型的气蚀比较,并对变色的像素数进行了计数。此外,通过固定剂量碎裂研究了不同脉冲重复频率(30、60、90、120 SW / min)下的碎石。我们观察到空化和破碎成反比。随着脉冲重复频率的增加,主要气穴的面积增加,而碎裂效率降低。 B型成像显示,次生空化气泡在冲击之间持续存在并可以作为核。脉冲重复频率越高,这些原子核保留的越多,因此有助于形成初级空化。该实验装置一方面提供了关于初级和次级空化的发展,另一方面提供了幻影碎石的可再现结果。因此,它可用于进一步研究不同边界条件和冲击波参数对空化和碎石的影响。不同焦点声场的影响是正在进行的研究的主题。

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