• DocumentCode
    374831
  • Title

    Cone-beam iterative reconstruction of a segment of a long object [SPECT]

  • Author

    Zeng, Gengsheng L. ; Gullberg, Grant T. ; Christian, Paul E. ; Gagnon, Daniel

  • Author_Institution
    Dept. of Radiol., Utah Univ., Salt Lake City, UT, USA
  • Volume
    2
  • fYear
    2000
  • fDate
    2000
  • Abstract
    This study was performed to investigate the iterative reconstruction of a segment of a long object using cone-beam projections acquired with a practical-size detector. This reconstruction problem is commonly called the cone-beam long object problem. The cone-beam focal-point trajectories studied were either helical or helical with planar arcs. We assume that the long object is confined in a tall supporting cylinder, and the cone-beam detector is wide enough that the projections are not truncated transversely. If the detector is not wide enough, we use two asymmetric cone-beam detectors, each covering at least one of half the field of view in the transverse direction. The detector in the axial direction is not large enough to cover the segment. The detector size is used to determine the maximal helical pitch. A data sufficiency condition is established to design a focal-point trajectory. The trajectory defines a convex hull. Projection rays that touch the region outside the convex hull and inside the supporting cylinder are discarded in the iterative algorithm. Computer simulations and experimental data verify that the proposed data acquisition and discarding strategy provide accurate segment reconstruction
  • Keywords
    image reconstruction; iterative methods; medical image processing; single photon emission computed tomography; SPECT; axial direction; computer simulations; cone-beam detector; cone-beam focal-point trajectories; cone-beam iterative reconstruction; cone-beam long object problem; cone-beam projections; convex hull; data acquisition; data sufficiency condition; detector size; field of view; focal-point trajectory; helical; helical with planar arcs; iterative algorithm; long object; maximal helical pitch; practical-size detector; projection rays; segment; supporting cylinder; tall supporting cylinder; transverse direction; two asymmetric cone-beam detectors; Attenuation; Cities and towns; Data acquisition; Detectors; Geometry; Image reconstruction; Object detection; Radiology; Reconstruction algorithms; Single photon emission computed tomography;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Nuclear Science Symposium Conference Record, 2000 IEEE
  • Conference_Location
    Lyon
  • ISSN
    1082-3654
  • Print_ISBN
    0-7803-6503-8
  • Type

    conf

  • DOI
    10.1109/NSSMIC.2000.950056
  • Filename
    950056