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声辐射力波束形状和位置对动脉频散超声速度测量中波谱含量的影响。

The influence of acoustic radiation force beam shape and location on wave spectral content for arterial dispersion ultrasound vibrometry.

机构信息

Department of Aerospace Engineering, San Diego State University, San Diego, CA 92182, United States of America.

Department of Civil Engineering, North Carolina State University, Raleigh, NC 27695, United States of America.

出版信息

Phys Med Biol. 2022 Jun 22;67(13). doi: 10.1088/1361-6560/ac75a7.

Abstract

. Arterial dispersion ultrasound vibrometry (ADUV) relies on the use of guided waves in arterial geometries for shear wave elastography measurements. Both the generation of waves through the use of acoustic radiation force (ARF) and the techniques employed to infer the speed of the resulting wave motion affect the spectral content and accuracy of the measurement. In particular, the effects of the shape and location of the ARF beam in ADUV have not been widely studied. In this work, we investigated how such variations of the ARF beam affect the induced motion and the measurements in the dispersive modes that are excited.The study includes an experimental evaluation on an arterial phantom and anvalidation of the observed trends, observing the two walls of the waveguide, simultaneously, when subjected to variations in the ARF beam extension (/) and focus location.Relying on the theory of guided waves in cylindrical shells, the shape of the beam controls the selection and nature of the induced modes, while the location affects the measured dispersion curves (i.e. variation of phase velocity with frequency or wavenumber, multiple modes) across the waveguide walls.This investigation is important to understand the spectral content variations in ADUV measurements and to maximize inversion accuracy by tuning the ARF beam settings in clinical applications.

摘要

. 动脉分散超声振动测量法(ADUV)依赖于在动脉几何结构中使用导波进行剪切波弹性成像测量。通过使用声辐射力(ARF)产生波以及用于推断所得波运动速度的技术都会影响测量的频谱内容和准确性。特别是,ARF 束在 ADUV 中的形状和位置的影响尚未得到广泛研究。在这项工作中,我们研究了 ARF 束的这种变化如何影响激励的色散模式中的感应运动和测量。该研究包括在动脉模型上进行实验评估,并验证所观察到的趋势,当 ARF 束延伸(/)和焦点位置发生变化时,同时观察波导的两个壁。依靠圆柱壳中导波的理论,光束的形状控制了感应模式的选择和性质,而位置则影响了沿波导壁测量的频散曲线(即相速度随频率或波数的变化,多模式)。这项研究对于理解 ADUV 测量中的频谱内容变化以及通过调整 ARF 束设置在临床应用中最大化反演准确性非常重要。

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