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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Simultaneous imaging of artery-wall strain and blood flow by high frame rate acquisition of RF signals
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Simultaneous imaging of artery-wall strain and blood flow by high frame rate acquisition of RF signals

机译:通过高帧频采集RF信号同时成像动脉壁应变和血流

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Mechanical properties of the arterial walls are significantly altered by atherosclerosis, and various studies have been recently conducted to measure the regional elastic properties (radial strain) of the arterial wall. We have developed a phase-sensitive correlation-based method, namely, the phased-tracking method, to measure the regional radial strain. On the other hand, the measurement of blood flow is an important practical routine in the diagnosis of atherosclerosis. It would be useful if the regional strain of the arterial wall as well as blood flow could be assessed simultaneously. Such measurement would require a high frame rate of several kilohertz. In this study, acquisition of ultrasonic RF echoes at a high frame rate (about 3500 Hz) was achieved using parallel beamforming in which plane waves were transmitted only 3 times and receive beamforming created 24 beams for each transmit beam. The accuracy in measurement of the minute radial strain was evaluated by a basic experiment using a cylindrical phantom. The error of the measured strain from the theoretical strain profile and its standard deviation were 4.8% and 9.5%, respectively. Furthermore, the radial strain of a carotid arterial wall and blood flow were simultaneously imaged in vivo.
机译:动脉粥样硬化显着改变了动脉壁的机械性能,并且最近进行了各种研究来测量动脉壁的区域弹性(径向应变)。我们已经开发出一种基于相敏相关性的方法,即相跟踪法,以测量区域径向应变。另一方面,血流的测量是诊断动脉粥样硬化的重要实用程序。如果可以同时评估动脉壁的局部应变以及血流,将很有用。这种测量将需要几千赫兹的高帧频。在这项研究中,使用平行波束成形实现了高帧频(约3500 Hz)的超声射频回波的采集,其中平面波仅发射3次,接收波束成形为每个发射波束产生24个波束。通过使用圆柱体模的基础实验来评估微小径向应变的测量精度。从理论应变曲线及其标准偏差测得的应变误差分别为4.8%和9.5%。此外,在体内同时成像了颈动脉壁的径向应变和血流。

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