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Sparse dictionary for synthetic transmit aperture medical ultrasound imaging

机译:用于合成透射孔径医学超声成像的稀疏字典

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摘要

It is possible to recover a signal below the Nyquist sampling limit using a compressive sensing technique in ultrasound imaging. However, the reconstruction enabled by common sparse transform approaches does not achieve satisfactory results. Considering the ultrasound echo signal's features of attenuation, repetition, and superposition, a sparse dictionary with the emission pulse signal is proposed. Sparse coefficients in the proposed dictionary have high sparsity. Images reconstructed with this dictionary were compared with those obtained with the three other common transforms, namely, discrete Fourier transform, discrete cosine transform, and discrete wavelet transform. The performance of the proposed dictionary was analyzed via a simulation and experimental data. The mean absolute error (MAE) was used to quantify the quality of the reconstructions. Experimental results indicate that the MAE associated with the proposed dictionary was always the smallest, the reconstruction time required was the shortest, and the lateral resolution and contrast of the reconstructed images were also the closest to the original images. The proposed sparse dictionary performed better than the other three sparse transforms. With the same sampling rate, the proposed dictionary achieved excellent reconstruction quality.
机译:使用超声成像中的压缩感测技术可以恢复低于奈奎斯特采样极限的信号。但是,由普通的稀疏变换方法实现的重建不能获得令人满意的结果。考虑到超声回波信号的衰减,重复和叠加特性,提出了一种带有发射脉冲信号的稀疏字典。建议字典中的稀疏系数具有较高的稀疏性。将使用此字典重构的图像与通过其他三个常见变换(离散傅立叶变换,离散余弦变换和离散小波变换)获得的图像进行比较。通过仿真和实验数据分析了建议字典的性能。平均绝对误差(MAE)用于量化重建的质量。实验结果表明,与所提出的字典相关的MAE总是最小的,所需的重建时间最短,并且重建图像的横向分辨率和对比度也最接近原始图像。提出的稀疏字典比其他三个稀疏变换的性能更好。在相同的采样率下,所提出的字典获得了出色的重建质量。

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