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基于特征空间的最小方差波束形成器与维纳后滤波器在医学超声成像中的结合。

Eigenspace-based minimum variance beamformer combined with Wiener postfilter for medical ultrasound imaging.

机构信息

Department of Electronic Engineering, Fudan University, Shanghai 200433, China.

出版信息

Ultrasonics. 2012 Dec;52(8):996-1004. doi: 10.1016/j.ultras.2012.07.012. Epub 2012 Aug 8.

Abstract

In this paper, a new beamformer which combines the eigenspace-based minimum variance (ESBMV) beamformer with the Wiener postfilter is proposed for medical ultrasound imaging. The primary goal of this work is to further improve the medical ultrasound imaging quality on the basis of the ESBMV beamformer. In this method, we optimize the ESBMV weights with a Wiener postfilter. With the optimization of the Wiener postfilter, the output power of the new beamformer becomes closer to the actual signal power at the imaging point than the ESBMV beamformer. Different from the ordinary Wiener postfilter, the output signal and noise power needed in calculating the Wiener postfilter are estimated respectively by the orthogonal signal subspace and noise subspace constructed from the eigenstructure of the sample covariance matrix. We demonstrate the performance of the new beamformer when resolving point scatterers and cyst phantom using both simulated data and experimental data and compare it with the delay-and-sum (DAS), the minimum variance (MV) and the ESBMV beamformer. We use the full width at half maximum (FWHM) and the peak-side-lobe level (PSL) to quantify the performance of imaging resolution and the contrast ratio (CR) to quantify the performance of imaging contrast. The FWHM of the new beamformer is only 15%, 50% and 50% of those of the DAS, MV and ESBMV beamformer, while the PSL is 127.2dB, 115dB and 60dB lower. What is more, an improvement of 239.8%, 232.5% and 32.9% in CR using simulated data and an improvement of 814%, 1410.7% and 86.7% in CR using experimental data are achieved compared to the DAS, MV and ESBMV beamformer respectively. In addition, the effect of the sound speed error is investigated by artificially overestimating the speed used in calculating the propagation delay and the results show that the new beamformer provides better robustness against the sound speed errors. Therefore, the proposed beamformer offers a better performance than the DAS, MV and ESBMV beamformer, showing its potential in medical ultrasound imaging.

摘要

本文提出了一种新的波束形成器,该波束形成器将基于特征空间的最小方差(ESBMV)波束形成器与维纳后滤波器相结合,用于医学超声成像。这项工作的主要目标是在 ESBMV 波束形成器的基础上进一步提高医学超声成像质量。在该方法中,我们使用维纳后滤波器优化 ESBMV 权值。通过维纳后滤波器的优化,新波束形成器的输出功率比 ESBMV 波束形成器更接近成像点的实际信号功率。与普通维纳后滤波器不同,用于计算维纳后滤波器的输出信号和噪声功率分别由从样本协方差矩阵的特征结构构建的正交信号子空间和噪声子空间估计。我们使用模拟数据和实验数据分别演示了新波束形成器在分辨点散射体和囊肿体模时的性能,并将其与延迟求和(DAS)、最小方差(MV)和 ESBMV 波束形成器进行了比较。我们使用半高全宽(FWHM)和峰值旁瓣电平(PSL)来量化成像分辨率的性能,使用对比度比(CR)来量化成像对比度的性能。新波束形成器的 FWHM 仅为 DAS、MV 和 ESBMV 波束形成器的 15%、50%和 50%,而 PSL 则低 127.2dB、115dB 和 60dB。更重要的是,与 DAS、MV 和 ESBMV 波束形成器相比,使用模拟数据可分别提高 239.8%、232.5%和 32.9%的 CR,使用实验数据可提高 814%、1410.7%和 86.7%的 CR。此外,通过人为高估用于计算传播延迟的速度来研究声速误差的影响,结果表明新波束形成器对声速误差具有更好的鲁棒性。因此,与 DAS、MV 和 ESBMV 波束形成器相比,所提出的波束形成器具有更好的性能,在医学超声成像中具有潜力。

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