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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Lateral RF image synthesis using a synthetic aperture imaging technique
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Lateral RF image synthesis using a synthetic aperture imaging technique

机译:使用合成孔径成像技术的横向RF图像合成

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The oscillating profile naturally present in ultrasound images has been shown to be extremely valuable in different applications, particularly in motion estimation. Recent studies have shown that it is possible to produce images with transverse oscillations (TOs) based on a specific type of beamforming. However, there is still a great difference between the nature of the lateral oscillations produced with current methods and the axial profile of ultrasound images. In this study, we propose to combine synthetic aperture imaging (synthetic transmit aperture, STA) using a specific beamformer in both transmit mode and receive mode combined with a heterodyning demodulation method to produce lateral radiofrequency signals (LRFs). The aim was to produce lateral signals as close as possible to conventional axial signals, which would make it possible to estimate lateral displacements with the same accuracy as in the axial direction. The feasibility of this approach was validated in simulation and experimentally on an ultrasound research platform, the Ultrasonix RP system. We show that the combination of STA and the heterodyning demodulation can divide the wavelength of the LRF signals by 4 and divide the width of the lateral envelope of the point spread function (PSF) by 2 compared with the previous approaches using beamforming in receive mode only. Finally, we also illustrate the potential of our beamforming for motion estimation compared with previous TO methods.
机译:在不同的应用中,特别是在运动估计中,天然存在于超声图像中的振荡轮廓已显示出极其宝贵的价值。最近的研究表明,可以基于特定类型的波束成形来产生具有横向振荡(TO)的图像。但是,当前方法产生的横向振荡的性质与超声图像的轴向轮廓之间仍然存在很大差异。在这项研究中,我们建议在发射模式和接收模式下,使用特定的波束形成器,将合成孔径成像(合成发射孔径,STA)与外差解调方法相结合,以产生横向射频信号(LRF)。目的是产生与传统轴向信号尽可能接近的横向信号,这将有可能以与轴向方向相同的精度估算横向位移。这种方法的可行性已在超声研究平台Ultrasonix RP系统的仿真和实验中得到验证。与仅在接收模式下使用波束成形的先前方法相比,我们表明,STA和外差解调的组合可以将LRF信号的波长除以4,并将点扩展函数(PSF)的横向包络宽度除以2 。最后,我们还说明了与以前的TO方法相比,波束成形在运动估计中的潜力。

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