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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Doppler-Based Motion Compensation Strategies for 3-D Diverging Wave Compounding and Multiplane-Transmit Beamforming: A Simulation Study
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Doppler-Based Motion Compensation Strategies for 3-D Diverging Wave Compounding and Multiplane-Transmit Beamforming: A Simulation Study

机译:基于多普勒的3D发散波合成和多平面传输波束成形的运动补偿策略:仿真研究

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摘要

Fast imaging of the heart has shown promise toward bringing new diagnostic information. Although most studies to date have been based on 2-D imaging technology, the ultimate diagnostic tool would enable fast 3-D echocardiography. Hereto, 3-D diverging wave compounding (DWC) and 3-D multiline-transmit (MLT) beamforming have recently been proposed. Moreover, in our recent study, a hybrid technique was proposed in which multiple planar diverging waves were transmitted [i.e., multiplane-transmit (MPT)]. The proposed 3MPT sequence was demonstrated to outperformn$9 times 9$nDWC and 16MLT-4MLA (i.e., multiline acquisition) while imaging moving targets. However, none of the investigated beamforming techniques made use of motion compensation (MoCo) strategies. In this paper, we therefore propose Doppler-based MoCo strategies for 3-D DWC and MPT and test them via computer simulations. It is demonstrated that the MoCo strategies proposed for both DWC and MPT are effective and significantly restore image quality. Moreover, the MPT beamforming with MoCo outperformsn$9 times 9$nDWC with MoCo in terms of contrast ratio and contrast-to-noise ratio. The proposed MPT beamforming with MoCo thus provides volumetric images with relatively high temporal resolution (~66 Hz) and high image quality that is minimally affected by motion artifacts.
机译:心脏的快速成像已显示出带来新诊断信息的希望。尽管迄今为止大多数研究都基于2-D成像技术,但最终的诊断工具将能够实现快速的3-D超声心动图。迄今为止,最近已经提出了3-D发散波复合(DWC)和3-D多线传输(MLT)波束成形。此外,在我们最近的研究中,提出了一种混合技术,其中发射了多个平面发散波[即,多平面发射(MPT)]。所提出的3MPT序列表现出优于 $ 9乘以9 $ nDWC和16MLT-4MLA(即多行采集),同时对移动目标成像。但是,没有一个研究的波束成形技术利用运动补偿(MoCo)策略。因此,在本文中,我们为3-D DWC和MPT提出了基于多普勒的MoCo策略,并通过计算机仿真对其进行了测试。结果表明,针对DWC和MPT提出的MoCo策略是有效的,并且可以显着恢复图像质量。此外,具有MoCo的MPT波束成形性能优于n $ 9乘以9 $ nDWC与MoCo的对比度和对比度噪声比。因此,提出的具有MoCo的MPT波束成形技术可提供具有相对较高的时间分辨率(〜66 Hz)和高图像质量的体积图像,这些图像受运动伪影的影响最小。

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