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A new time-domain narrowband velocity estimation technique for Doppler ultrasound flow imaging. II. Comparative performance assessment

机译:多普勒超声血流成像的一种新的时域窄带速度估计技术。二。比较绩效评估

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For pt.I see ibid., vol.45, no.4, pp.939-54 (1998). The statistical performance of the new 2-D narrowband time-domain root-MUSIC blood velocity estimator described previously is evaluated using both simulated and flow phantom wideband (50% fractional bandwidth) ultrasonic data. Comparisons are made with the standard 1-D Kasai estimator and two other wideband strategies: the time domain correlator and the wideband point maximum likelihood estimator. A special case of the root-MUSIC, the "spatial" Kasai, is also considered. Simulation and flow phantom results indicate that the root-MUSIC blood velocity estimator displays a superior ability to reconstruct spatial blood velocity information under a wide range of operating conditions. The root-MUSIC mode velocity estimator can be extended to effectively remove the clutter component from the sample volume data. A bimodal velocity estimator is formed by processing the signal subspace spanned by the eigenvectors corresponding to the two largest eigenvalues of the Doppler correlation matrix. To test this scheme, in vivo common carotid flow complex Doppler data was obtained from a commercially available color flow imaging system. Velocity estimates were made using a reduced form of this data corresponding to higher frame rates. The extended root-MUSIC approach was found to produce superior results when compared to both 1- and 2-D Kasai-type estimators that used initialized clutter filters. The results obtained using simulated, flow phantom, and in vivo data suggest that increased sensitivity as well as effective clutter suppression can be achieved using the root-MUSIC technique, and this may be particularly important for wideband high frame rate imaging applications.
机译:关于pt,我参见同上,第45卷,第4期,第939-54页(1998年)。先前描述的新的2D窄带时域根MUSIC血流速度估计器的统计性能是使用模拟和流动幻像宽带(分数带宽为50%)超声数据进行评估的。使用标准的1-D Kasai估计器和其他两种宽带策略进行了比较:时域相关器和宽带点最大似然估计器。还考虑了根音乐的一种特殊情况,即“空间” Kasai。仿真和流幻象结果表明,根MUSIC血流速度估算器在各种操作条件下均具有出色的重构空间血流速度信息的能力。可以扩展根MUSIC模式速度估计器,以有效地从样本量数据中去除杂波分量。通过处理由对应于多普勒相关矩阵的两个最大特征值的特征向量跨越的信号子空间来形成双峰速度估计器。为了测试该方案,从市售的彩色血流成像系统获得体内普通颈动脉血流复合物多普勒数据。使用对应于较高帧速率的此数据的简化形式进行速度估算。与使用初始化杂波滤波器的一维和二维Kasai型估计器相比,扩展的根MUSIC方法被发现可产生更好的结果。使用模拟的,流模型和体内数据获得的结果表明,使用root-MUSIC技术可以实现更高的灵敏度以及有效的杂波抑制,这对于宽带高帧频成像应用可能尤其重要。

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