Shock wave sensors: I. Requirements and design.

P A Lewin, M E Schafer
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Abstract

In the last 9 years, extracorporeal shock wave lithotripsy has become one of the preferred procedures for the treatment of urinary and gallbladder calculi. While there is still uncertainty as to the mechanisms of stone fragmentation, current hypotheses suggest that acoustical shock wave parameters such as rise time, peak compressional and rarefactional pressure, and frequency content may all influence the treatment's efficiency. Thus, optimization of lithotripsy treatment needs pressure sensors that can adequately characterize the shock wave field. This article presents and discusses the design of reliable, wideband, quantitative shock wave sensors made of piezoelectric material. The development, design, and performance characteristics of the sensors are presented. Sensor construction details are described, as are the methods used to characterize the sensor's acoustical performance. The key acoustical parameters of the sensor, its frequency response, and directivity pattern are presented; theory indicates that the probes feature uniform sensitivity over the frequency range up to 100 MHz. Preliminary experimental results indicate that piezoelectric polymer sensors made of polyvinylidene fluoride (PVDF) with a low acoustical impedance backing are suitable for lithotripter field measurements. The applicability of sensors based on fiber optics to shock wave measurements is also briefly discussed. In a companion article, shock wave measurement techniques are outlined and selected lithotripter test data are presented.

冲击波传感器:1、要求与设计。
在过去的9年里,体外冲击波碎石术已经成为治疗泌尿系统结石和胆囊结石的首选方法之一。尽管对于碎石碎裂的机制仍存在不确定性,但目前的假设表明,声激波参数,如上升时间、峰值压缩和分压以及频率含量,都可能影响治疗的效率。因此,优化碎石处理需要能够充分表征冲击波场的压力传感器。本文介绍并讨论了一种可靠、宽带、定量的压电材料冲击波传感器的设计。介绍了传感器的研制、设计和性能特点。描述了传感器的结构细节,以及用于表征传感器声学性能的方法。给出了传感器的主要声学参数、频率响应和指向性图;理论表明,探头在高达100mhz的频率范围内具有均匀的灵敏度。初步实验结果表明,采用低声阻抗衬底的聚偏氟乙烯(PVDF)压电聚合物传感器适用于碎石机现场测量。本文还简要讨论了基于光纤的传感器在冲击波测量中的适用性。在一篇配套文章中,冲击波测量技术概述和选择的碎石机试验数据提出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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