• DocumentCode
    2052121
  • Title

    Comparison of the differential attenuation method for multi-emission SPECT with conventional methods of attenuation compensation

  • Author

    Kaplan, Mitchell S. ; Haynor, David R. ; Vija, Hans

  • Author_Institution
    Dept. of Radiol., Washington Univ., Seattle, WA, USA
  • Volume
    2
  • fYear
    1999
  • fDate
    1999
  • Firstpage
    879
  • Abstract
    The Differential Attenuation Method (DAM) was developed to simultaneously estimate activity and attenuation distributions from multi-emission projection data alone. Previously, DAM was shown to improve the quality and quantitative accuracy compared with filtered-backprojection without attenuation compensation. Here, that work is extended by comparing the performance of DAM to an iterative penalized-weighted least-squares reconstruction with: (1) uniform attenuation, and (2) the true attenuation. A single-slice numerical torso phantom was used to simulate data from 201Tl cardiac studies. Noise-free projections and data with additive Poisson-distributed noise were simulated with and without a myocardial perfusion defect. Scatter was not simulated. Images reconstructed with DAM from data at realistic count densities were more accurate than those reconstructed with an assumed uniform attenuation distribution, and nearly as accurate as those obtained using the true attenuation distribution
  • Keywords
    error compensation; image reconstruction; iterative methods; least mean squares methods; medical image processing; single photon emission computed tomography; RMS errors; activity distributions; additive Poisson-distributed noise; attenuation compensation; attenuation distributions; differential attenuation method; iterative penalized-weighted least-squares reconstruction; multi-emission SPECT; multi-emission projection data; myocardial perfusion defect; noise-free projections; objective function; quantitative accuracy; single-slice numerical torso phantom; true attenuation; uniform attenuation; Additive noise; Attenuation; Electromagnetic scattering; Image reconstruction; Isotopes; Particle scattering; Radiology; Reconstruction algorithms; Single photon emission computed tomography; Torso;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Nuclear Science Symposium, 1999. Conference Record. 1999 IEEE
  • Conference_Location
    Seattle, WA
  • ISSN
    1082-3654
  • Print_ISBN
    0-7803-5696-9
  • Type

    conf

  • DOI
    10.1109/NSSMIC.1999.845804
  • Filename
    845804