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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Effect of subaperture beamforming on phase coherence imaging
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Effect of subaperture beamforming on phase coherence imaging

机译:子孔径波束形成对相干成像的影响

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High-frame-rate echocardiography using unfocused transmit beams and parallel receive beamforming is a promising method for evaluation of cardiac function, such as imaging of rapid propagation of vibration of the heart wall resulting from electrical stimulation of the myocardium. In this technique, high temporal resolution is realized at the expense of spatial resolution and contrast. The phase coherence factor has been developed to improve spatial resolution and contrast in ultrasonography. It evaluates the variance in phases of echo signals received by individual transducer elements after delay compensation, as in the conventional delay-andsum beamforming process. However, the phase coherence factor suppresses speckle echoes because phases of speckle echoes fluctuate as a result of interference of echoes. In the present study, the receiving aperture was divided into several subapertures, and conventional delay-and-sum beamforming was performed with respect to each subaperture to suppress echoes from scatterers except for that at a focal point. After subaperture beamforming, the phase coherence factor was obtained from beamformed RF signals from respective subapertures. By means of this procedure, undesirable echoes, which can interfere with the echo from a focal point, can be suppressed by subaperture beamforming, and the suppression of the phase coherence factor resulting from phase fluctuation caused by such interference can be avoided. In the present study, the effect of subaperture beamforming in high-frame-rate echocardiography with the phase coherence factor was evaluated using a phantom. By applying subaperture beamforming, the average intensity of speckle echoes from a diffuse scattering medium was significantly higher (???39.9 dB) than that obtained without subaperture beamforming (???48.7 dB). As for spatial resolution, the width at half-maximum of the lateral echo amplitude profile obtained without the phase coherence factor was 1.06 mm. By using the ph- se coherence factor, spatial resolution was improved significantly, and subaperture beamforming achieved a better spatial resolution of 0.75 mm than that of 0.78 mm obtained without subaperture beamforming.
机译:使用未聚焦的发射束和并行接收束形成的高帧速超声心动图是一种有前途的方法,可用于评估心脏功能,例如对心肌电刺激导致的心壁振动的快速传播进行成像。在该技术中,以空间分辨率和对比度为代价实现了高时间分辨率。已经开发了相位相干因子以改善超声检查中的空间分辨率和对比度。与传统的延迟和求和波束形成过程一样,它可以评估延迟补偿后各个换能器元件接收到的回声信号的相位变化。然而,相位相干因子抑制了斑点回波,因为斑点回波的相位由于回波的干扰而波动。在本研究中,接收孔径被分成几个子孔径,并且对每个子孔径执行常规的延迟和求和波束成形,以抑制来自散射体的回声(焦点除外)。在子孔径波束成形之后,从各个子孔径的波束成形RF信号获得相位相干因子。通过该过程,可以通过子孔径波束形成来抑制不希望有的回声,该回声会干扰来自焦点的回声,并且可以避免由于这种干扰引起的相位波动而导致的相位相干因子的抑制。在本研究中,使用体模评估了具有相干因子的高帧速超声心动图中子孔径波束形成的影响。通过使用亚孔波束成形,来自漫散射介质的散斑回波的平均强度(39.9 dB)显着高于没有亚孔波束成形获得的斑点回波的强度(48.7 dB)。关于空间分辨率,在没有相位相干因子的情况下获得的横向回波振幅分布的半峰宽为1.06mm。通过使用相干因子,空间分辨率得到了显着改善,并且与不使用亚孔径波束形成技术获得的0.78 mm分辨率相比,亚孔径波束形成实现了0.75 mm的更好空间分辨率。

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