• DocumentCode
    2555426
  • Title

    A mathematical formulation of the single-pinhole transform and asymptotic properties in fourier space

  • Author

    Ihsani, Alvin ; Farncombe, Troy H.

  • fYear
    2012
  • fDate
    Oct. 27 2012-Nov. 3 2012
  • Firstpage
    2493
  • Lastpage
    2496
  • Abstract
    The recent introduction of organ specific imaging systems such as the GE Discovery NM 530c has focused attention on using arrays of small cameras using single-pinhole collimators. While offering advantages in terms of the speed of data acquisition and detection sensitivity, cost issues arise with an increased number of detectors. The goal of this research is to minimize the number of detectors for data acquisition while preserving the resolution of the reconstructed images so that small structures of interest can be reconstructed reliably. The approach taken to solve this problem is to analyze the Fourier properties of a mathematical formulation of the single-pinhole transform in order to construct an optimal sampling lattice. The sampling lattice, in turn, dictates the distance between pinholes and the shift of the detector surface if required.
  • Keywords
    Fourier transforms; biomedical imaging; cameras; collimators; data acquisition; image reconstruction; single photon emission computed tomography; Fourier properties; Fourier space; GE Discovery NM 530c; asymptotic properties; data acquisition; detection sensitivity; detector surface shift; image reconstruction; mathematical formulation; optimal sampling lattice; organ specific imaging systems; single-pinhole collimators; single-pinhole transform; small camera array; Optimization of Data Acquisition; SPECT Imaging; Single-Pinhole Transform;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2012 IEEE
  • Conference_Location
    Anaheim, CA
  • ISSN
    1082-3654
  • Print_ISBN
    978-1-4673-2028-3
  • Type

    conf

  • DOI
    10.1109/NSSMIC.2012.6551569
  • Filename
    6551569