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Ultrasound three-dimensional velocity measurements by feature tracking

机译:通过特征跟踪进行超声三维速度测量

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This article describes a new angle-independent method suitable for three-dimensional (3-D) blood flow velocity measurement that tracks features of the ultrasonic speckle produced by a pulse echo system. In this method, a feature is identified and followed over time to detect motion. Other blood flow velocity measurement methods typically estimate velocity using one- (1-D) or two-dimensional (2-D) spatial and time information. Speckle decorrelation due to motion in the elevation dimension may hinder this estimate of the true 3-D blood flow velocity vector. Feature tracking is a 3-D method with the ability to measure the true blood velocity vector rather than a projection onto a line or plane. Off-line experiments using a tissue phantom and a real-time volumetric ultrasound imaging system have shown that the local maximum detected value of the speckle signal may be identified and tracked for measuring velocities typical of human blood flow. The limitations of feature tracking, including the uncertainty of the peak location and the duration of the local maxima are discussed. An analysis of the expected error using this method is given.
机译:本文介绍了一种适用于三维(3-D)血流速度测量的新角度独立方法,该方法可跟踪由脉冲回波系统产生的超声斑点的特征。在这种方法中,特征被识别并随时间推移以检测运动。其他血流速度测量方法通常使用一(1-D)或二维(2-D)空间和时间信息来估计速度。由于仰角维度上的运动而引起的斑点去相关可能会阻碍对真实3D血流速度矢量的估计。特征跟踪是一种3D方法,能够测量真实的血流速度矢量,而不是在直线或平面上的投影。使用组织体模和实时体积超声成像系统进行的离线实验表明,可以识别并跟踪斑点信号的局部最大检测值,以测量人血流的典型速度。讨论了特征跟踪的局限性,包括峰位置的不确定性和局部最大值的持续时间。给出了使用这种方法对预期误差的分析。

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