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Analysis of correlation coefficient filtering in elasticity imaging

机译:弹性成像中相关系数滤波的分析

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摘要

Correlation-based speckle tracking methods are commonly used in elasticity imaging to estimate displacements. In the presence of local strain, a larger window size results in larger displacement error. To reduce tracking error, we proposed a short correlation window followed by a correlation coefficient filter. Although simulation and experimental results demonstrated the efficacy of the method, it was not clear why correlation coefficient filtering reduces tracking error since tracking error increases if normalization before filtering is not applied. In this paper, we analyzed tracking errors by estimating phase variances of the cross-correlation function and the correlation coefficient at the true time lag based on statistical properties of these functions' real and imaginary parts. The role of normalization is clarified by identifying the effect of the cross-correlation function's amplitude fluctuation on the function's imaginary part. Furthermore, we present analytic forms for predicting axial displacement error as a function of strain, system parameters (signal-to-noise ratio, center frequency, and signal and noise bandwidths), and tracking parameters (window and filter sizes) for cases with and without normalization before filtering. Simulation results correspond to theory well for both noise-free cases and general cases with an empirical correction term included for strains up to 4%.
机译:基于关联的斑点跟踪方法通常用于弹性成像中以估计位移。在存在局部应变的情况下,较大的窗口尺寸会导致较大的位移误差。为了减少跟踪误差,我们提出了一个较短的相关窗口,后面是相关系数滤波器。尽管仿真和实验结果证明了该方法的有效性,但尚不清楚为什么相关系数滤波会减少跟踪误差,因为如果不应用滤波前的归一化,跟踪误差会增加。在本文中,我们根据这些函数的实部和虚部的统计特性,通过估计互相关函数的相位方差和真实时间滞后的相关系数来分析跟踪误差。通过确定互相关函数的幅度波动对函数的虚部的影响,可以明确归一化的作用。此外,对于具有和的情况,我们提供了用于预测轴向位移误差作为应变,系统参数(信噪比,中心频率以及信号和噪声带宽)以及跟踪参数(窗口和滤波器大小)的函数的解析形式。过滤前不进行归一化。对于无噪声的情况和一般情况,仿真结果都与理论很好地吻合,其中包括针对4%以下应变的经验校正项。

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