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Two-dimensional frequency shift track based on geometric moment invariants

机译:基于几何矩不变性的二维移频轨道

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A novel ultrasonic flow velocity estimation method employing the two-dimensional (2-D) frequency shift track is proposed. By representing the backscattered echoes from human blood in the 2-D frequency domain, this paper shows that the velocity profile measurement using pulsed-wave Doppler ultrasound and the moving target track in image processing are isomorphic problems. Therefore, feature template matching based on geometric moment invariants can be used to track the 2-D frequency shift from which the velocity is estimated. Then we discuss the characteristics of the moment invariants and present correlation coefficient as a tracing strategy. The experimental results show the method can overcome the disadvantage caused by frequency-dependent attenuation and get better effect in velocity profile estimation.
机译:提出了一种新的采用二维(2-D)频移轨迹的超声流速估计方法。通过在二维频域中表示来自人体血液的反向散射回波,本文表明,使用脉冲多普勒超声进行速度分布测量和图像处理中的运动目标轨迹是同构问题。因此,基于几何矩不变性的特征模板匹配可用于跟踪从中估算速度的二维频移。然后,我们讨论了矩不变量的特征,并提出了相关系数作为跟踪策略。实验结果表明,该方法克服了频率衰减引起的缺点,在速度分布估计中取得了较好的效果。

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