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磁共振成像中几种部分傅里叶重建算法的定量评估。

Quantitative evaluation of several partial Fourier reconstruction algorithms used in MRI.

作者信息

McGibney G, Smith M R, Nichols S T, Crawley A

机构信息

Department of Electrical and Computer Engineering, University of Calgary, Alberta, Canada.

出版信息

Magn Reson Med. 1993 Jul;30(1):51-9. doi: 10.1002/mrm.1910300109.

Abstract

Partial Fourier reconstruction algorithms exploit the redundancy in magnetic resonance data sets so that half of the data is calculated during image reconstruction rather than acquired. The conjugate synthesis, Margosian, homodyne detection, Cuppen and POCS algorithms are evaluated using spatial frequency domain analysis to show their characteristics and where limitations may occur. The phase correction used in partial Fourier reconstruction is equivalent to a convolution in the frequency domain and the importance of accurately implementing this convolution is demonstrated. New reconstruction approaches, based on passing the partial data through a phase correcting, finite impulse response (FIR), digital filter are suggested. These FIR and MoFIR algorithms have a speed near that of the Margosian and homodyne detection reconstructions, but with a lower error; close to that of the Cuppen/POCS iterative approaches. Quantitative analysis of the partial Fourier algorithms, tested with three phase estimation techniques, are provided by comparing artificial and clinical data reconstructed using full and partial Fourier techniques.

摘要

部分傅里叶重建算法利用磁共振数据集的冗余性,以便在图像重建期间计算而不是采集一半的数据。使用空间频域分析对共轭合成、马戈西安、零差检测、库彭和POCS算法进行评估,以展示它们的特性以及可能出现局限性的地方。部分傅里叶重建中使用的相位校正相当于频域中的卷积,并证明了准确实现此卷积的重要性。提出了基于将部分数据通过相位校正有限脉冲响应(FIR)数字滤波器的新重建方法。这些FIR和MoFIR算法的速度接近马戈西安和零差检测重建的速度,但误差更低;接近库彭/POCS迭代方法的误差。通过比较使用全傅里叶技术和部分傅里叶技术重建的人工数据和临床数据,对使用三种相位估计技术测试的部分傅里叶算法进行了定量分析。

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