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Nonlocal Regularized Algebraic Reconstruction Techniques for MRI: An Experimental Study

机译:MRI的非局部正则化代数重建技术:一项实验研究

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摘要

We attempt to revitalize researchers' interest in algebraic reconstruction techniques (ART) by expanding their capabilities and demonstrating their potential in speeding up the process of MRI acquisition. Using a continuous-to-discrete model, we experimentally study the application of ART into MRI reconstruction which unifies previous nonuniform-fast-Fourier-transform (NUFFT-) based and gridding-based approaches. Under the framework of ART, we advocate the use of nonlocal regularization techniques which are leveraged from our previous research on modeling photographic images. It is experimentally shown that nonlocal regularization ART (NR-ART) can often outperform their local counterparts in terms of both subjective and objective qualities of reconstructed images. On one real-world k-space data set, we find that nonlocal regularization can achieve satisfactory reconstruction from as few as one-third of samples. We also address an issue related to image reconstruction from real-world k-space data but overlooked in the open literature: the consistency of reconstructed images across different resolutions. A resolution-consistent extension of NR-ART is developed and shown to effectively suppress the artifacts arising from frequency extrapolation. Both source codes and experimental results of this work are made fully reproducible.
机译:我们试图通过扩大研究人员的能力并展示其在加速MRI采集过程中的潜力来激发研究人员对代数重建技术(ART)的兴趣。使用连续到离散模型,我们实验性地研究了ART在MRI重建中的应用,该重建将以前基于非均匀快速傅里叶变换(NUFFT-)和基于网格的方法统一了起来。在ART的框架下,我们提倡使用非本地正则化技术,这些技术是从我们先前对摄影图像建模的研究中获得的。实验表明,就重建图像的主观和客观质量而言,非局部正则化ART(NR-ART)常常会胜过其局部同类产品。在一个真实的k空间数据集上,我们发现非局部正则化可以从少至三分之一的样本中获得令人满意的重构。我们还解决了与根据现实世界的k空间数据进行图像重建有关的问题,但在公开文献中却忽略了这一问题:不同分辨率下重建图像的一致性。开发了分辨率一致的NR-ART扩展,可以有效抑制频率外推引起的伪像。这项工作的源代码和实验结果都可以完全重现。

著录项

  • 来源
    《Mathematical Problems in Engineering》 |2013年第7期|192895.1-192895.11|共11页
  • 作者

    Xin Li;

  • 作者单位

    Lane Department of Computer Science and Electrical Engineering, West Virginia University, Morgantown, WV 26506-6109, USA;

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