• DocumentCode
    720678
  • Title

    Multiple-organ segmentation based on spatially-divided neighboring data energy

  • Author

    Morita, Minato ; Okagawa, Asuka ; Oyamada, Yuji ; Mochizuki, Yoshihiko ; Ishikawa, Hiroshi

  • fYear
    2015
  • fDate
    18-22 May 2015
  • Firstpage
    158
  • Lastpage
    161
  • Abstract
    Medical image segmentation, e.g., Computed Tomography (CT) volume segmentation, is necessary for further medical image analysis and computer aided intervention. In the standard energy minimization scheme for medical image segmentation, three terms exist in the energy: the data term, the Potts smoothing term, and the probabilistic atlas term. In this paper, we propose a novel potential function that extends the data term. The discriminability of the existing data term, which fully depends on how distinctive the objects of interest appear on CT volume, has problem when some of the objects have similar or same CT values. We overcome this limitation by considering the CT values of a pair of neighboring voxels. Increasing the voxel of interest to be evaluated, the data term become more discriminable even if some objects of interest have similar CT values. We also propose to learn the probability of the neighboring data term for each sub-region, not for each voxel. The proposed neighboring data term can be regarded as to combine the standard data term and the probabilistic atlas.
  • Keywords
    computerised tomography; image segmentation; medical image processing; Potts smoothing term; computer aided intervention; data term; medical image analysis; medical image segmentation; multiple-organ segmentation; probabilistic atlas term; spatially-divided neighboring data energy; Biomedical imaging; Computed tomography; Image segmentation; Kidney; Lungs; Probabilistic logic; Standards;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Machine Vision Applications (MVA), 2015 14th IAPR International Conference on
  • Conference_Location
    Tokyo
  • Type

    conf

  • DOI
    10.1109/MVA.2015.7153157
  • Filename
    7153157