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Velocity vector estimation in synthetic aperture flow and B-mode imaging

机译:合成孔径流和B模式成像中的速度矢量估计

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A method for determining both velocity magnitude and angle in a synthetic aperture ultrasound system is described. The approach uses directional beamforming along the flow direction and cross-correlation to determine velocity magnitude. The angle of the flow is determined from the maximum normalized correlation calculated as a function of angle. The method is investigated using data measured by an experimental ultrasound scanner from a flow rig. A commercial 7 MHz linear array transducer is used and data are measured for flow angles of 60/spl deg/ and 90/spl deg/. The velocity magnitude is determined with a precision of 0.36 % (60/spl deg/) and 1.2 % (90/spl deg/), respectively. The 60/spl deg/ angle is estimated with a bias of 0.54/spl deg/ and a standard deviation of 2.1/spl deg/. For 90/spl deg/ the bias is 0.0003/spl deg/ and standard deviation 1.32/spl deg/.
机译:描述了一种用于确定合成孔径超声系统中的速度大小和角度的方法。该方法使用沿流向的定向波束成形和互相关来确定速度大小。根据作为角度的函数计算出的最大归一化相关性来确定流的角度。使用实验超声扫描仪从流动装置测得的数据对方法进行了研究。使用商用的7 MHz线性阵列换能器,并测量60 / spl deg /和90 / spl deg /的流动角的数据。确定速度幅值的精度分别为0.36%(60 / spl deg /)和1.2%(90 / spl deg /)。估计60 / spl deg /角度时的偏差为0.54 / spl deg /,标准偏差为2.1 / spl deg /。对于90 / spl deg /,偏差为0.0003 / spl deg /,标准偏差为1.32 / spl deg /。

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