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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Implementation of parallel transmit beamforming using orthogonal frequency division multiplexing-achievable resolution and interbeam interference
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Implementation of parallel transmit beamforming using orthogonal frequency division multiplexing-achievable resolution and interbeam interference

机译:利用正交频分复用可实现的分辨率和波束间干扰实现并行发射波束成形

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摘要

The speed of sound in the human body limits the achievable data acquisition rate of pulsed ultrasound scanners. To overcome this limitation, parallel beamforming techniques are used in ultrasound 2-D and 3-D imaging systems. Different parallel beamforming approaches have been proposed. They may be grouped into two major categories: parallel beamforming in reception and parallel beamforming in transmission. The first category is not optimal for harmonic imaging; the second category may be more easily applied to harmonic imaging. However, inter-beam interference represents an issue. To overcome these shortcomings and exploit the benefit of combining harmonic imaging and high data acquisition rate, a new approach has been recently presented which relies on orthogonal frequency division multiplexing (OFDM) to perform parallel beamforming in transmission. In this paper, parallel transmit beamforming using OFDM is implemented for the first time on an ultrasound scanner. An advanced open platform for ultrasound research is used to investigate the axial resolution and interbeam interference achievable with parallel transmit beamforming using OFDM. Both fundamental and second-harmonic imaging modalities have been considered. Results show that, for fundamental imaging, axial resolution in the order of 2 mm can be achieved in combination with interbeam interference in the order of -30 dB. For second-harmonic imaging, axial resolution in the order of 1 mm can be achieved in combination with interbeam interference in the order of -35 dB.
机译:人体中的声速限制了脉冲超声扫描仪可实现的数据采集速率。为了克服此限制,在超声波2-D和3-D成像系统中使用了并行波束成形技术。已经提出了不同的并行波束成形方法。它们可以分为两大类:接收中的并行波束成形和发送中的并行波束成形。第一类不是谐波成像的最佳选择。第二类可能更容易应用于谐波成像。但是,光束间干扰是一个问题。为了克服这些缺点并利用结合谐波成像和高数据采集速率的好处,最近提出了一种新方法,该方法依靠正交频分复用(OFDM)在传输中执行并行波束成形。在本文中,首次在超声扫描仪上实现了使用OFDM的并行发射波束成形。使用先进的开放式超声研究平台来研究使用OFDM的并行发射波束成形可实现的轴向分辨率和波束间干扰。已经考虑了基本和二次谐波成像模态。结果表明,对于基本成像,结合-30 dB量级的光束间干扰,可以实现2 mm量级的轴向分辨率。对于二次谐波成像,可以结合-35 dB的光束间干扰实现1 mm的轴向分辨率。

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