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用于增强应变成像的位移位置估计。

Estimation of displacement location for enhanced strain imaging.

作者信息

Lindop Joel E, Treece Graham M, Gee Andrew H, Prager Richard W

机构信息

Department of Engineering, University of Cambridge, Cambridge, CB2 1PZ, UK.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2007 Sep;54(9):1751-71. doi: 10.1109/tuffc.2007.460.

Abstract

Ultrasonic strain imaging usually begins with displacement estimates computed using finite-length sections of RF ultrasound signals. Amplitude variations in the ultrasound are known to perturb the location at which the displacement estimate is valid. If this goes uncorrected, it is a significant source of estimation noise, which is amplified when displacement fields are converted into strain images. We present a study of this effect based on theoretical analysis and practical experiments. A correction method based on the analysis is tested on phase zero and correlation coefficient strain imaging, and compared to the amplitude compression techniques of earlier studies. We also test adaptive strain estimation to provide a benchmark, but the performance of our new method matches or surpasses this benchmark under normal scanning conditions. Furthermore, the new correction is suitable for real time applications owing to its extreme computational simplicity.

摘要

超声应变成像通常始于使用射频超声信号的有限长度段计算出的位移估计值。已知超声中的幅度变化会干扰位移估计有效的位置。如果不对此进行校正,它将成为估计噪声的一个重要来源,而当位移场转换为应变图像时,这种噪声会被放大。我们基于理论分析和实际实验对这种效应进行了研究。基于该分析的一种校正方法在零相位和相关系数应变成像上进行了测试,并与早期研究中的幅度压缩技术进行了比较。我们还测试了自适应应变估计以提供一个基准,但在正常扫描条件下,我们新方法的性能与该基准相当或更优。此外,由于其极高的计算简单性,新的校正方法适用于实时应用。

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