• DocumentCode
    3337504
  • Title

    Characteristics of proton CT images reconstructed with filtered backprojection and iterative projection algorithms

  • Author

    Penfold, Scott N. ; Schulte, Reinhard W. ; Censor, Yair ; Bashkirov, Vladimir ; Rosenfeld, Anatoly B.

  • Author_Institution
    Centre for Med. Radiat. Phys., Univ. of Wollongong, Wollongong, NSW, Australia
  • fYear
    2009
  • fDate
    Oct. 24 2009-Nov. 1 2009
  • Firstpage
    4176
  • Lastpage
    4180
  • Abstract
    In early studies of proton computed tomography (pCT), images were reconstructed with the fast and robust filtered backprojection (FBP) algorithm. Due to multiple Coulomb scattering of the protons within the object, the straight line path assumption of FBP resulted in poor spatial resolution. In an attempt to improve spatial resolution, a formalism to predict the proton path of maximum likelihood through the image space was created. The use of these paths with the iterative algebraic reconstruction technique (ART), have shown an improvement in spatial resolution, but also an increase in image noise, resulting in poor density resolution. In this work, we propose a reconstruction method that attempts to optimize both spatial and density resolution of pCT images. The new reconstruction approach makes use of the block-iterative diagonally relaxed orthogonal projections (DROP) algorithm with an initial FBP-reconstructed image estimate. Reconstruction of Monte Carlo simulated pCT data sets of spatial and density resolution phantoms demonstrated that the combined reconstruction approach resulted in better spatial resolution than the FBP algorithm alone and better density resolution than the DROP algorithm starting from a uniform initial image estimate.
  • Keywords
    computerised tomography; image reconstruction; iterative methods; phantoms; Monte Carlo simulation; density resolution; diagonally relaxed orthogonal projections algorithm; filtered backprojection; image estimate; image noise; image reconstruction; image space; iterative algebraic reconstruction technique; iterative projection algorithms; maximum likelihood; multiple Coulomb scattering; phantoms; proton computed tomography images; spatial resolution; Computed tomography; Image reconstruction; Image resolution; Iterative algorithms; Maximum likelihood estimation; Projection algorithms; Protons; Robustness; Scattering; Spatial resolution;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Nuclear Science Symposium Conference Record (NSS/MIC), 2009 IEEE
  • Conference_Location
    Orlando, FL
  • ISSN
    1095-7863
  • Print_ISBN
    978-1-4244-3961-4
  • Electronic_ISBN
    1095-7863
  • Type

    conf

  • DOI
    10.1109/NSSMIC.2009.5402282
  • Filename
    5402282