• DocumentCode
    1139956
  • Title

    Toeplitz-Based Iterative Image Reconstruction for MRI With Correction for Magnetic Field Inhomogeneity

  • Author

    Fessler, Jeffrey A. ; Lee, Sangwoo ; Olafsson, Valur T. ; Shi, Hugo R. ; Noll, Douglas C.

  • Author_Institution
    Dept. of Electr. Eng. & Comput. Sci., Univ. of Michigan, Ann Arbor, MI, USA
  • Volume
    53
  • Issue
    9
  • fYear
    2005
  • Firstpage
    3393
  • Lastpage
    3402
  • Abstract
    In some types of magnetic resonance (MR) imaging, particularly functional brain scans, the conventional Fourier model for the measurements is inaccurate. Magnetic field inhomogeneities, which are caused by imperfect main fields and by magnetic susceptibility variations, induce distortions in images that are reconstructed by conventional Fourier methods. These artifacts hamper the use of functional MR imaging (fMRI) in brain regions near air/tissue interfaces. Recently, iterative methods that combine the conjugate gradient (CG) algorithm with nonuniform FFT (NUFFT) operations have been shown to provide considerably improved image quality relative to the conjugate-phase method. However, for non-Cartesian k-space trajectories, each CG-NUFFT iteration requires numerous k-space interpolations; these are operations that are computationally expensive and poorly suited to fast hardware implementations. This paper proposes a faster iterative approach to field-corrected MR image reconstruction based on the CG algorithm and certain Toeplitz matrices. This CG-Toeplitz approach requires k-space interpolations only for the initial iteration; thereafter, only fast Fourier transforms (FFTs) are required. Simulation results show that the proposed CG-Toeplitz approach produces equivalent image quality as the CG-NUFFT method with significantly reduced computation time.
  • Keywords
    Toeplitz matrices; biomedical MRI; conjugate gradient methods; fast Fourier transforms; image reconstruction; image sampling; interpolation; iterative methods; magnetic fields; magnetic susceptibility; medical image processing; Toeplitz-based iterative image reconstruction; air-tissue interface; brain region; conjugate gradient algorithm; fast Fourier transform method; functional MRI; image sampling; k-space interpolation; magnetic field inhomogeneity correction; magnetic resonance imaging; magnetic susceptibility; Character generation; Image quality; Image reconstruction; Interpolation; Iterative algorithms; Iterative methods; Magnetic field measurement; Magnetic fields; Magnetic resonance; Magnetic resonance imaging; fMRI imaging; magnetic susceptibility; non-Cartesian sampling; spiral trajectory;
  • fLanguage
    English
  • Journal_Title
    Signal Processing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1053-587X
  • Type

    jour

  • DOI
    10.1109/TSP.2005.853152
  • Filename
    1495877