• DocumentCode
    935980
  • Title

    MR susceptibility misregistration correction

  • Author

    Sumanaweera, Thilaka S. ; Glover, Gary H. ; Binford, Thomas O. ; Adler, John R.

  • Author_Institution
    Stanford Univ., CA, USA
  • Volume
    12
  • Issue
    2
  • fYear
    1993
  • fDate
    6/1/1993 12:00:00 AM
  • Firstpage
    251
  • Lastpage
    259
  • Abstract
    The authors present a new in vivo method to correct the nonlinear, object-shape-dependent and material-dependent spatial distortion in magnetic resonance (MR) images caused by magnetic susceptibility variations. This distortion across the air/tissue interface before and after the correction is quantified using a phantom. The results are compared to the distortion-free computed tomography (CT) images of the same phantom by fusing CT and MR images using fiducials, with a registration accuracy of better than a millimeter. The distortion at the bone/tissue boundary is negligible compared to the typical MRI (MR imaging) resolution of 1 mm, while that at the air/tissue boundary creates displacements of about 2 mm (for Gx 3.13 mT/m). This is a significant value if MRI is to provide highly accurate geometric measurements, as in the case of target localization for stereotaxic surgery. The correction scheme provides MR images with accuracy similar to that of CT: 1 mm. A new method to estimate the magnetic susceptibility of materials from MR images is presented. The magnetic susceptibility of cortical bone is measured using a SQUID magnetometer, and is found to be -8.86 ppm (with respect to air), which is quite similar to that of tissue (-9 ppm)
  • Keywords
    biomedical NMR; magnetic susceptibility; MR susceptibility misregistration correction; air/tissue boundary; geometric measurements; in vivo method; magnetic resonance imaging; medical diagnostic imaging; nonlinear spatial distortion; phantom; registration accuracy; target localization; Bones; Computed tomography; High-resolution imaging; Imaging phantoms; In vivo; Magnetic materials; Magnetic resonance; Magnetic resonance imaging; Magnetic susceptibility; Nonlinear distortion;
  • fLanguage
    English
  • Journal_Title
    Medical Imaging, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0062
  • Type

    jour

  • DOI
    10.1109/42.232253
  • Filename
    232253