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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Filter-Based Compounded Delay Estimation With Application to Strain Imaging
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Filter-Based Compounded Delay Estimation With Application to Strain Imaging

机译:基于滤波器的复合时延估计及其在应变成像中的应用

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Ultrasonic wave interference produces local fluctuations in both the envelope, known as speckle, and phase of echoes. Furthermore, such fluctuations are correlated in space, and subsequent motion estimation from the envelope and/or phase signal produces patterned, correlated errors. Compounding, or combining information from multiple decorrelated looks, reduces such effects. We propose using a filter bank to create multiple looks to produce a compounded motion estimate. In particular, filtering in the lateral direction is shown to preserve delay estimation accuracy in the filtered sub-bands while creating decorrelation between sub-bands at the expense of some lateral resolution. For Gaussian apodization, we explicitly compute the induced signal decorrelation produced by Gabor filters. Furthermore, it is shown that lateral filtering is approximately equivalent to steering, in which filtered sub-bands correspond to signals extracted from shifted sub-apertures. Field II simulation of a point spread function verifies this claim. We use phase zero and its variants as displacement estimators for our compounded result. A simplified deformation model is used to provide computer simulations of deforming an elastic phantom. Simulations demonstrate root mean square error (RMSE) reduction in both displacement and strain of the compounded result over conventional and its laterally blurred versions. Then we apply the methods to experimental data using a commercial elastic phantom, demonstrating an improvement in strain SNR.
机译:超声波干扰会在包络(称为斑点)和回波相位中产生局部波动。此外,这种波动在空间上是相关的,并且随后根据包络和/或相位信号进行的运动估计会产生图案化的相关误差。复合或组合来自多个不相关外观的信息会减少这种影响。我们建议使用滤波器组来创建多个外观以产生复合运动估计。具体地,示出了在横向方向上的滤波以保持滤波后的子带中的延迟估计精度,同时以一些横向分辨率为代价在子带之间创建去相关。对于高斯切趾,我们显式计算由Gabor滤波器产生的感应信号去相关。此外,示出了横向滤波近似等于转向,其中滤波后的子带对应于从移位的子孔径提取的信号。点扩展函数的Field II模拟验证了这一说法。我们使用零相位及其变体作为我们的复合结果的位移估计量。简化的变形模型用于提供使弹性体模变形的计算机模拟。仿真表明,与传统及其横向模糊版本相比,复合结果的位移和应变均方根误差(RMSE)降低。然后,我们使用商业弹性体模将该方法应用于实验数据,证明了应变SNR的提高。

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