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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Real-time vector velocity assessment through multigate doppler and plane waves
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Real-time vector velocity assessment through multigate doppler and plane waves

机译:通过多门多普勒和平面波实时矢量速度评估

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Several ultrasound (US) methods have been recently proposed to produce 2-D velocity vector fields with high temporal and spatial resolution. However, the real-time implementation in US scanners is heavily hampered by the high calculation power required. In this work, we report a real-time vector Doppler imaging method which has been integrated in an open research system. The proposed approach exploits the plane waves transmitted from two sub-arrays of a linear probe to estimate the velocity vectors in 512 sample volumes aligned along the probe axis. The method has been tested for accuracy and reproducibility through simulations and in vitro experiments. Simulations over a 0 0; to 90 0; angle range of a 0.5 m/s peak parabolic flow have yielded 0.75 0; bias and 1.1 0; standard deviation for direction measurement, and 0.6 cm/s bias with 3.1% coefficient of variation for velocity assessment. In vitro tests have supported the simulation results. Preliminary measurements on the carotid artery of a volunteer have highlighted the real-time system capability of imaging complex flow configurations in an intuitive, easy, and quick way, as shown in a sample supplementary movie. These features have allowed reproducible peak velocity measurements to be obtained, as needed for quantitative investigations on patients.
机译:最近已经提出了几种超声(US)方法来产生具有高时间和空间分辨率的二维速度矢量场。但是,美国扫描仪的实时实现受到所需的高计算能力的严重阻碍。在这项工作中,我们报告了一种实时矢量多普勒成像方法,该方法已集成到开放研究系统中。所提出的方法利用了从线性探针的两个子阵列发射的平面波来估计沿探针轴对齐的512个样本体积中的速度矢量。该方法已通过仿真和体外实验测试了准确性和可重复性。 0 0上的模拟;至90 0;峰值抛物线流量为0.5 m / s的角度范围为0.75 0;偏和1.1 0;方向测量的标准偏差,以及偏差为3.1%的速度评估的0.6 cm / s偏差。体外测试支持了仿真结果。志愿者的颈动脉的初步测量结果突出了实时系统以直观,轻松和快速的方式对复杂的流量配置进行成像的能力,如样本补充影片所示。这些功能使得可以对患者进行定量研究,从而获得可重现的峰值速度测量值。

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