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A comparison of flow tracking techniques: spatial quadrature with phase-sensitive axial demodulation versus speckle tracking

机译:流跟踪技术的比较:具有相位敏感轴向解调的空间正交与斑点跟踪

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Spatial quadrature and speckle tracking are both techniques which extend the estimation of flow velocity or tissue motion velocity to two or three dimensions. The authors applied both under similar experimental conditions to assess and compare their performance. They also describe a new spatial quadrature processor that obviates the need for axial alignment under conditions of mixed axial-lateral flow. This processor avoids the estimate bias produced by jitter in the axial alignment step previously described, and thus allows the non-axial component(s) of flow to be tracked without sacrificing axial resolution. In the authors' flow experiment, summed radiofrequency echo data were captured in an M-mode scan geometry using 2:1 parallel receive processing in both spatial quadrature and two-beam speckle tracking configurations using a 7.5 MHz linear array and a modified commercial ultrasound scanner. Laminar flow was established in a wall-less vessel phantom using a computer-controlled pump. The authors captured echo data from this phantom at beam-vessel angles of 60/spl deg/ and 90/spl deg/ (i.e. pure lateral flow). These data were processed off-line to estimate flow velocity profiles. Volume flow rates were calculated from these profiles by integration. The mean volume flow rates estimated with 2-D speckle tracking agreed with the known flow rates with a maximum relative error of 7% for true lateral flow and 10% for mixed axial-lateral flow. The equivalent values for spatial quadrature were 5% and 15%.
机译:空间正交和斑点跟踪都是将流速度或组织运动速度的估计扩展到二维或三维的技术。作者在相似的实验条件下应用了两者来评估和比较它们的性能。他们还描述了一种新的空间正交处理器,该处理器消除了轴向-横向混合流动条件下的轴向对准需求。该处理器避免了前面所述的轴向对准步骤中由抖动产生的估计偏差,因此可以在不牺牲轴向分辨率的情况下跟踪流的非轴向分量。在作者的流动实验中,使用7.5 MHz线性阵列和改进的商用超声扫描仪,在空间正交和两光束斑点跟踪配置中使用2:1并行接收处理,在M模式扫描几何体中捕获了汇总的射频回波数据。使用计算机控制的泵在无壁血管模型中建立层流。作者从该模型中以60 / spl deg /和90 / spl deg /的射束角度(即纯横向流)捕获了回波数据。离线处理这些数据以估计流速分布。通过积分从这些曲线计算出体积流率。用2-D散斑跟踪估算的平均体积流量与已知流量相符,真正的侧向流量的最大相对误差为7%,轴向和侧向混合流量的最大相对误差为10%。空间正交的等效值为5%和15%。

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