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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Effective lateral modulations with applications to shear modulus reconstruction using displacement vector measurement
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Effective lateral modulations with applications to shear modulus reconstruction using displacement vector measurement

机译:有效的横向调制,并应用于使用位移矢量测量的剪切模量重构

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High accuracy in measuring target motions can be realized by combined use of our previously developed lateral Gaussian envelope cosine modulation method (LGECMM) and displacement vector measurement methods that enable simultaneous axial and lateral displacement measurements, such as the multidimensional autocorrelation method (MAM). In this paper, LGECMM is improved by using parabolic functions and Hanning windows instead of Gaussian functions in the apodization function, i.e., parabolic apodization and Hanning apodization. The new modulations enable decreases in effective aperture length (i.e., channels) and yield more accurate displacement vector measurements than LGECMM due to increased echo signal-to-noise ratio and lateral spatial resolution. That is, on the basis of a priori knowledge about ultrasound propagation using the focusing scheme and shape of the apodization function, we stopped using Fraunhofer approximation. As practical applications of the modulations, for an agar phantom that is deformed in a lateral direction, stable and accurate 2-D shear modulus reconstructions are performed using our previously developed direct inversion approach together with 2-D strain tensor measurements using MAM.
机译:通过结合使用我们先前开发的横向高斯包络余弦调制方法(LGECMM)和能够同时进行轴向和横向位移测量的位移矢量测量方法(例如多维自相关方法(MAM)),可以实现目标运动的高精度测量。在本文中,通过在抛物线化函数(即抛物线变迹和汉宁变迹)中使用抛物线函数和Hanning窗口而不是高斯函数来改进LGECMM。由于增加了回声信噪比和横向空间分辨率,新的调制方式使得有效孔径长度(即通道)的减小和与LGECMM相比的位移矢量测量更为精确。也就是说,基于关于使用聚焦方案和切趾函数形状的超声传播的先验知识,我们停止使用Fraunhofer逼近。作为调制的实际应用,对于在横向方向变形的琼脂幻影,使用我们先前开发的直接反演方法以及使用MAM进行的二维应变张量测量,可以进行稳定而准确的二维剪切模量重构。

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