利用抛物多项式展开和Riesz变换进行二维散斑跟踪

M. Almekkawy, E. Ebbini
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引用次数: 10

摘要

超声散斑跟踪提供了沿光束方向精细组织位移的鲁棒运动估计。近年来已经提出了对二维的扩展。由于横向采样相对粗糙,一些解决方案依赖于横向插值来实现子样本精度。提出了一种新的多维散斑跟踪方法(MDST),该方法在所有维度上都具有子样本精度。该算法基于求解最小二乘问题来估计二阶多项式展开的系数,以拟合广义解析信号在真峰附近的二维复归一化相关的大小。泛化方法利用了Riesz变换,即多维希尔伯特变换。位移是根据所获取的感兴趣区域的连续射频数据帧估计的。为了验证该方法的准确性,对具有已知基准位移的通道中的流动数据进行了现场模拟。此外,将新的MDST方法应用于流动模体(ATS Model 524)的成像数据,以估计流动运动和脉动通道壁面。仿真和实验结果验证了该方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-dimensional speckle tracking using parabolic polynomial expansion with Riesz transform
Ultrasound speckle tracking provides a robust motion estimation of fine tissue displacements along the beam direction. Extensions to 2-D have been proposed in recent years. Due to relatively coarse lateral sampling, several solutions relied on lateral interpolation in order to achieve subsample accuracy. We introduce a new multi-dimensional speckle tracking method (MDST) with subsample accuracy in all dimensions. The proposed algorithm is based on solving a least squares problem to estimate the coefficients of a second order polynomial expansion to fit the magnitude of the two dimensional complex normalized correlation of the generalized analytic signal in the vicinity of the true peak. The generalization method utilizes the Riesz transform which is the multidimensional Hilbert transform. The displacement is estimated from acquired successive radio-frequency data frames of the region of interest. Field II simulation of flow data in a channel with a bench mark known displacement is generated to validate the accuracy of the method. In addition, the new MDST method is applied to imaging data from a flow phantom (ATS Model 524) to estimate the flow motion and pulsating channel wall. Simulations and experimental results demonstrate the effectiveness of the proposed technique.
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