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Three-dimensional model of elastic wave propagation in kidney stones with application to shock wave lithotripsy.

机译:弹性波在肾结石中传播的三维模型及其在冲击波碎石术中的应用。

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摘要

Shock wave lithotripsy (SWL) has been used to treat kidney stones for decades. However, there is growing recognition that shock waves induced trauma to kidney tissues. The poor understanding of kidney stone comminution by SWL has led to the design of new lithotripters that do not appear to have better clinical outcomes. A three-dimensional time-domain finite-difference solution to the linear elastic equations was applied to investigate the stress and velocity fields of kidney stones subject to lithotripsy shock waves. Simulations with cylindrical and spherical shapes indicated the importance of shear waves in generating high tension in the stones. The kidney stone models were scanned from micro-computed tomography and had diameters from 2 mm to 5 mm. It was found for these shapes too that shear waves induced by interference of the shock wave with stone boundaries dominated the high stress in the stones. The traditional belief of stone comminution mechanism by spell mechanism does not play an important role due to the irregular proximal and distal stone surfaces. It was found for natural stones that stone orientation had an impact on the generation of high stress with a smooth convex surface producing the highest internal stresses. The conclusion of this work is that lithotripters with a focal width larger than a stone should be able to break the stone more efficiently since the large focal width shock waves result in stronger interaction with stone circumferences and produce larger shear waves.
机译:冲击波碎石术(SWL)已用于治疗肾结石数十年。但是,人们越来越认识到,冲击波会引起肾脏组织的损伤。 SWL对肾结石粉碎的了解不足,导致新的碎石机的设计似乎没有更好的临床效果。应用线性时滞方程的三维时域有限差分法,研究了碎石冲击波作用下肾结石的应力场和速度场。圆柱和球形的模拟表明,剪切波对于在石头中产生高张力非常重要。肾结石模型通过微计算机断层扫描术进行扫描,直径为2毫米至5毫米。对于这些形状,还发现由冲击波与石材边界的干扰引起的剪切波主导了石材中的高应力。由于石头表面的近端和远端不规则,因此传统的通过拼写机制粉碎石头的信念并未发挥重要作用。对于天然石材,发现石材取向会影响高应力的产生,而光滑的凸面会产生最高的内应力。这项工作的结论是,焦距比石头大的碎石机应该能够更有效地破碎石头,因为焦距大的冲击波会导致与石头圆周的相互作用更强,并产生更大的剪切波。

著录项

  • 作者

    Luo, Haibiao.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 269 p.
  • 总页数 269
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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