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Ultrasonic synthetic aperture imaging used to measure 2D velocity fields in real time

机译:超声波合成孔径成像用于实时测量2D速度场

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Synthetic aperture techniques have been adopted to improve spatial resolution and provide an extremely fast 3D data acquisition modality for measuring the velocity of relatively fast moving structures such as the heart muscle or blood in arterial stenoses. Synthetic aperture techniques require the use of a 2D transducer array as well as very fast signal acquisition and processing capabilities. A laboratory C-mode Doppler device has been built for the evaluation of the new procedure. Experiments were carried out with a laboratory flow model which was filled with a blood-mimicking fluid. The spatial resolution as well as the accuracy of the measured velocity field have not been achieved simultaneously by color Doppler techniques. As a consequence of the parallel interrogation of the sample volumes, spatial resolution is not dependent on time or velocity resolution. It can be refined by using an array with a larger overall area and an increased number of elements as well as a corresponding extension of the electronic circuitry.
机译:已经采用合成孔径技术来改善空间分辨率,并提供极快的3D数据采集模态,用于测量诸如动脉狭窄中的心肌或血液的相对快速移动结构的速度。合成孔径技术需要使用2D换能器阵列以及非常快速的信号采集和处理能力。建立了一个实验室C模式多普勒装置,用于评估新程序。用实验室流动模型进行实验,该实验室流体填充有血液模拟液体。彩色多普勒技术尚未同时实现空间分辨率以及测量速度场的准确性。由于样品体积的并行询问,空间分辨率不依赖于时间或速度分辨率。它可以通过使用具有较大总面积的阵列和增加数量的元件以及电子电路的相应延伸来改进。

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