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A study of stone fragmentation in shock wave lithotripsy by customizing the acoustic field and waveform shape.

机译:通过定制声场和波形形状研究冲击波碎石术中的碎石。

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摘要

Shock wave lithotripsy is the preferred treatment modality for kidney stones in the United States. Despite clinical use for over twenty-five years, the mechanisms of stone fragmentation are still under debate. A piezoelectric array was employed to examine the effect of waveform shape and pressure distribution on stone fragmentation in lithotripsy. The array consisted of 170 elements placed on the inner surface of a 15 cm-radius spherical cap. Each element was driven independently using a 170 individual pulsers, each capable of generating 1.2 kV. The acoustic field was characterized using a fiber optic probe hydrophone with a bandwidth of 30 MHz and a spatial resolution of 100 mum. When all elements were driven simultaneously, the focal waveform was a shock wave with peak pressures p+ = 65 +/- 3 MPa and p- = -16 +/- 2 MPa and the -6 dB focal region was 13 mm long and 2 mm wide. The delay for each element was the only control parameter for customizing the acoustic field and waveform shape, which was done with the aim of investigating the hypothesized mechanisms of stone fragmentation such as spallation, shear, squeezing, and cavitation. The acoustic field customization was achieved by employing the angular spectrum approach for modeling the forward wave propagation and regression of least square errors to determine the optimal set of delays. Results from the acoustic field customization routine and its implications on stone fragmentation will be discussed.
机译:在美国,冲击波碎石术是肾结石的首选治疗方式。尽管临床使用已超过25年,但碎石的机制仍在争论中。使用压电阵列检查波形形状和压力分布对碎石术中碎石的影响。该阵列由放置在15厘米半径的球形帽的内表面上的170个元素组成。每个元件使用170个独立的脉冲器独立驱动,每个脉冲器均能够产生1.2 kV。使用具有30 MHz带宽和100 mum空间分辨率的光纤探针水听器对声场进行表征。当同时驱动所有元件时,聚焦波形是峰值压力p + = 65 +/- 3 MPa和p- = -16 +/- 2 MPa的冲击波,-6 dB聚焦区长13 mm,2 mm宽。每个元素的延迟是用于定制声场和波形形状的唯一控制参数,其目的是调查假设的碎石机理,例如剥落,剪切,挤压和空化。通过采用角谱方法对正向波传播和最小二乘误差回归进行建模以确定最佳延迟集,可以实现声场定制。将讨论声场定制程序的结果及其对碎石的影响。

著录项

  • 作者

    Chitnis, Parag Vijay.;

  • 作者单位

    Boston University.;

  • 授予单位 Boston University.;
  • 学科 Engineering Biomedical.; Engineering Mechanical.; Physics Acoustics.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 168 p.
  • 总页数 168
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;机械、仪表工业;声学;
  • 关键词

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