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基于临床超声扫描仪的矢量多普勒系统的实验特性分析

Experimental characterization of a vector Doppler system based on a clinical ultrasound scanner.

作者信息

Eranki Avinash, Sikdar Siddhartha

机构信息

Department of Electrical and Computer Engineering and Krasnow Institute for Advanced Study, George Mason University, Fairfax, VA 22030, USA.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2009;2009:2260-3. doi: 10.1109/IEMBS.2009.5334972.

Abstract

We have developed a vector Doppler system using a clinical ultrasound scanner with a research interface. In this system, vector Doppler estimation is performed by electronically dividing a linear array transducer into a transmit sub-aperture and two receive sub-apertures. The receive beams are electronically steered, and two velocity components are estimated from echoes received from the beam overlap region. The velocity vector is reconstructed from these two estimates. The goal of this study was to characterize this vector Doppler system in vitro using a string phantom with a pulsatile velocity waveform. We studied the effect of four parameters on the estimation error: beam steering angle, angle of the velocity vector, depth of the scatterer relative to the beam overlap region and the transmit focus depth. Our results show that changing these parameters have minimal effect on the velocity and angle estimates, and robust velocity vector estimates can be obtained under a variety of conditions. The mean velocity error was less than 0.06 x pulse repetition frequency. The velocity estimates are sensitive to the Doppler estimation method. Our results indicate that vector Doppler using a linear array transducer is feasible for a wide range of imaging parameters. Such a system would facilitate the investigation of complex blood flow and tissue motion in human subjects.

摘要

我们利用带有研究接口的临床超声扫描仪开发了一种矢量多普勒系统。在该系统中,通过将线性阵列换能器电子划分为一个发射子孔径和两个接收子孔径来进行矢量多普勒估计。接收波束进行电子控制,从波束重叠区域接收到的回波中估计两个速度分量。速度矢量由这两个估计值重建得到。本研究的目的是使用具有脉动速度波形的线阵模型在体外对该矢量多普勒系统进行特性描述。我们研究了四个参数对估计误差的影响:波束控制角度、速度矢量角度、散射体相对于波束重叠区域的深度以及发射聚焦深度。我们的结果表明,改变这些参数对速度和角度估计的影响极小,并且在各种条件下都能获得稳健的速度矢量估计。平均速度误差小于0.06×脉冲重复频率。速度估计对多普勒估计方法敏感。我们的结果表明,使用线性阵列换能器的矢量多普勒对于广泛的成像参数是可行的。这样的系统将有助于对人体复杂血流和组织运动进行研究。

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