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诊断曲线探头超声场中的激波形成和非线性饱和效应。

Shock formation and nonlinear saturation effects in the ultrasound field of a diagnostic curvilinear probe.

作者信息

Karzova Maria M, Yuldashev Petr V, Sapozhnikov Oleg A, Khokhlova Vera A, Cunitz Bryan W, Kreider Wayne, Bailey Michael R

机构信息

Physics Faculty, Moscow State University, Moscow 119991, Russia.

Center for Industrial and Medical Ultrasound, Applied Physics Laboratory, University of Washington, 1013 NE 40th Street, Seattle, Washington 98105, USA.

出版信息

J Acoust Soc Am. 2017 Apr;141(4):2327. doi: 10.1121/1.4979261.

Abstract

Newer imaging and therapeutic ultrasound technologies may benefit from in situ pressure levels higher than conventional diagnostic ultrasound. One example is the recently developed use of ultrasonic radiation force to move kidney stones and residual fragments out of the urinary collecting system. A commercial diagnostic 2.3 MHz C5-2 array probe has been used to deliver the acoustic pushing pulses. The probe is a curvilinear array comprising 128 elements equally spaced along a convex cylindrical surface. The effectiveness of the treatment can be increased by using higher transducer output to provide a stronger pushing force; however nonlinear acoustic saturation can be a limiting factor. In this work nonlinear propagation effects were analyzed for the C5-2 transducer using a combined measurement and modeling approach. Simulations were based on the three-dimensional Westervelt equation with the boundary condition set to match low power measurements of the acoustic pressure field. Nonlinear focal waveforms simulated for different numbers of operating elements of the array at several output power levels were compared to fiber-optic hydrophone measurements and were found to be in good agreement. It was shown that saturation effects do limit the acoustic pressure in the focal region of a diagnostic imaging probe.

摘要

更新的成像和治疗超声技术可能受益于高于传统诊断超声的原位压力水平。一个例子是最近开发的利用超声辐射力将肾结石和残留碎片移出尿液收集系统。一种商用诊断2.3 MHz C5-2阵列探头已被用于发射声学推动脉冲。该探头是一个曲线阵列,由128个沿凸圆柱面等间距排列的元件组成。通过使用更高的换能器输出以提供更强的推动力,可以提高治疗效果;然而,非线性声饱和可能是一个限制因素。在这项工作中,使用测量与建模相结合的方法对C5-2换能器的非线性传播效应进行了分析。模拟基于三维韦斯特维尔特方程,边界条件设置为与声压场的低功率测量相匹配。将在几个输出功率水平下针对阵列不同数量的工作元件模拟的非线性聚焦波形与光纤水听器测量结果进行比较,发现两者吻合良好。结果表明,饱和效应确实会限制诊断成像探头聚焦区域的声压。

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