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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >MVDR-based coherence weighting for high-frame-rate adaptive imaging
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MVDR-based coherence weighting for high-frame-rate adaptive imaging

机译:基于MVDR的相干加权用于高帧率自适应成像

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摘要

Some success has been demonstrated in the extensive studies of adaptive imaging, but these approaches are generally not suitable for high-frame-rate (HFR) imaging where broad transmit beams are required. In this study, we propose an effective adaptive imaging method suitable for HFR imaging based on coherence-factor (CF) weighting and the minimum-variance-distortionless-response (MVDR) method. The CF is an index of focusing quality estimated from receive-channel data in which the amplitude of each image pixel is weighted by the corresponding CF so as to reduce the unwanted sidelobes. Direct implementation of CF weighting in HFR imaging does not provide satisfactory results because the broad transmit beams required for HFR imaging reduce the accuracy of CF calculations. In this study, we alleviated this problem by applying the MVDR method. We test the proposed method with the synthetic transmit aperture method where only 8 firings are required to form an image. Both simulations and clinical breast imaging data were used, and the proposed method enhanced the mean contrast by around 4.6 dB and the mean contrast-to-noise ratio by around 20%. The results demonstrate that the proposed method is effective at improving the image quality.
机译:在自适应成像的广泛研究中已经证明了一些成功,但是这些方法通常不适用于需要宽发射光束的高帧率(HFR)成像。在这项研究中,我们基于相干因子(CF)加权和最小方差无失真响应(MVDR)方法,提出了一种适用于HFR成像的有效自适应成像方法。 CF是根据接收通道数据估计的聚焦质量的指标,其中,每个图像像素的幅度由相应的CF加权,以减少不需要的旁瓣。在HFR成像中直接执行CF加权无法提供令人满意的结果,因为HFR成像所需的宽发射光束会降低CF计算的准确性。在这项研究中,我们通过应用MVDR方法缓解了这一问题。我们使用合成发射孔径方法测试提出的方法,该方法仅需要8次发射就可以形成图像。模拟和临床乳腺成像数据均被使用,并且所提出的方法将平均对比度提高了约4.6 dB,将平均对比度与噪声比提高了约20%。结果表明,该方法可以有效提高图像质量。

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