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带运动校正的张量速度成像

Tensor Velocity Imaging With Motion Correction.

作者信息

Jorgensen Lasse Thurmann, Schou Mikkel, Stuart Matthias Bo, Jensen Jorgen Arendt

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2021 May;68(5):1676-1686. doi: 10.1109/TUFFC.2020.3046101. Epub 2021 Apr 26.

Abstract

This article presents a motion compensation procedure that significantly improves the accuracy of synthetic aperture tensor velocity estimates for row-column arrays. The proposed motion compensation scheme reduces motion effects by moving the image coordinates with the velocity field during summation of low-resolution volumes. The velocity field is estimated using a transverse oscillation cross-correlation estimator, and each image coordinate's local tensor velocity is determined by upsampling the field using spline interpolation. The motion compensation procedure is validated using Field II simulations and flow measurements acquired using a 3-MHz row-column addressed probe and the research scanner SARUS. For a peak velocity of 25 cm/s, a pulse repetition frequency of 2 kHz, and a beam-to-flow angle of 60°, the proposed motion compensation procedure was able to reduce the relative bias from -27.0% to -9.4% and the standard deviation from 8.6% to 8.1%. In simulations performed with a pulse repetition frequency of 10 kHz, the proposed method reduces the bias in all cases with beam-to-flow angles of 60° and 75° and peak velocities between 10 and 150 cm/s.

摘要

本文提出了一种运动补偿程序,该程序显著提高了行列阵列合成孔径张量速度估计的准确性。所提出的运动补偿方案通过在低分辨率体积求和期间利用速度场移动图像坐标来减少运动影响。速度场使用横向振荡互相关估计器进行估计,并且通过使用样条插值对场进行上采样来确定每个图像坐标的局部张量速度。使用Field II模拟以及使用3MHz行列寻址探头和研究扫描仪SARUS获取的血流测量结果对运动补偿程序进行了验证。对于25cm/s的峰值速度、2kHz的脉冲重复频率和60°的波束与血流夹角,所提出的运动补偿程序能够将相对偏差从-27.0%降低到-9.4%,并将标准差从8.6%降低到8.1%。在以10kHz的脉冲重复频率进行的模拟中,所提出的方法在波束与血流夹角为60°和75°且峰值速度在10至150cm/s之间的所有情况下均降低了偏差。

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