• DocumentCode
    1044269
  • Title

    Exact and Approximate Fourier Rebinning Algorithms for the Solution of the Data Truncation Problem in 3-D PET

  • Author

    Ben Bouallègue, Fayçal ; Crouzet, Jean-François ; Comtat, Claude ; Fourcade, Marjolaine ; Mohammadi, Bijan ; Mariano-Goulart, Denis

  • Author_Institution
    Montpellier II Univ., Montpellier
  • Volume
    26
  • Issue
    7
  • fYear
    2007
  • fDate
    7/1/2007 12:00:00 AM
  • Firstpage
    1001
  • Lastpage
    1009
  • Abstract
    This paper presents an extended 3D exact rebinning formula in the Fourier space that leads to an iterative reprojection algorithm (iterative FOREPROJ), which enables the estimation of unmeasured oblique projection data on the basis of the whole set of measured data. In first approximation, this analytical formula also leads to an extended Fourier rebinning equation that is the basis for an approximate reprojection algorithm (extended FORE). These algorithms were evaluated on numerically simulated 3D positron emission tomography (PET) data for the solution of the truncation problem, i.e., the estimation of the missing portions in the oblique projection data, before the application of algorithms that require complete projection data such as some rebinning methods (FOREX) or 3D reconstruction algorithms (3DRP or direct Fourier methods). By taking advantage of all the 3D data statistics, the iterative FOREPROJ reprojection provides a reliable alternative to the classical FOREPROJ method, which only exploits the low-statistics nonoblique data. It significantly improves the quality of the external reconstructed slices without loss of spatial resolution. As for the approximate extended FORE algorithm, it clearly exhibits limitations due to axial interpolations, but will require clinical studies with more realistic measured data in order to decide on its pertinence.
  • Keywords
    Fourier analysis; biomedical imaging; image reconstruction; medical computing; positron emission tomography; 3D PET; 3D data statistics; 3D exact rebinning formula; 3D reconstruction algorithm; 3DRP; FOREX; Fourier rebinning algorithm; axial interpolation; data truncation problem; direct Fourier method; extended FORE; iterative FOREPROJ reprojection; iterative reprojection algorithm; positron emission tomography; Algorithm design and analysis; Approximation algorithms; Equations; Iterative algorithms; Iterative methods; Numerical simulation; Positron emission tomography; Reconstruction algorithms; Spatial resolution; Statistics; Fourier rebinning; image reconstruction; medical imaging; positron emission tomography (PET); reprojection; Algorithms; Artifacts; Brain; Fourier Analysis; Humans; Image Enhancement; Image Interpretation, Computer-Assisted; Imaging, Three-Dimensional; Phantoms, Imaging; Positron-Emission Tomography; Reproducibility of Results; Sample Size; Sensitivity and Specificity;
  • fLanguage
    English
  • Journal_Title
    Medical Imaging, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0062
  • Type

    jour

  • DOI
    10.1109/TMI.2007.897362
  • Filename
    4265744