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Suppression of shocked-bubble expansion due to tissue confinement with application to shock-wave lithotripsy

机译:应用于组织波限制的冲击泡沫扩张及其在冲击波碎石术中的应用

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摘要

Estimates are made of the effect of tissue confinement on the response of small bubbles subjected to lithotriptor shock pressures. To do this the Rayleigh–Plesset equation, which governs the dynamics of spherical bubbles, is generalized to treat a bubble in a liquid region (blood), which is in turn encased within an elastic membrane (like a vessel’s basement membrane), beyond which a Voigt viscoelastic material models the exterior tissue. Material properties are estimated from a range of measurements available for kidneys and similar soft tissues. Special attention is given to the constitutive modeling of the basement membranes because of their expected importance due to their proximity to the bubble and their toughness. It is found that the highest expected values for the elasticity of the membrane and surrounding tissue are insufficient to suppress bubble growth. The reduced confinement of a cylindrical vessel should not alter this conclusion. Tissue viscosities taken from ultrasound measurements suppress bubble growth somewhat, though not to a degree expected to resist injury. However, the higher reported viscosities measured by other means, which are arguably more relevant to the deformations caused by growing bubbles, do indeed significantly suppress bubble expansion.
机译:估计了组织限制对受到碎石机冲击压力作用的小气泡的响应的影响。为此,将控制球形气泡动力学的Rayleigh-Plesset方程泛化为处理液体区域(血液)中的气泡,然后将其包裹在弹性膜(如容器的基底膜)中,超出该范围, Voigt粘弹性材料为外部组织建模。材料特性是根据可用于肾脏和类似软组织的一系列测量值估算的。由于对基膜的接近气泡和韧性的预期重要性,因此对基膜的本构模型给予了特别关注。发现膜和周围组织的弹性的最高期望值不足以抑制气泡的生长。减少圆柱容器的限制不应改变这一结论。从超声测量获得的组织粘度可以一定程度地抑制气泡的生长,尽管不能达到预期的抵抗损伤的程度。但是,通过其他方法测得的更高的报告粘度(可以说与气泡增长引起的变形更相关)确实确实可以显着抑制气泡膨胀。

著录项

  • 作者

    Freund, Jonathan B.;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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