• DocumentCode
    1824578
  • Title

    Shape-based transfer functions for volume visualization

  • Author

    Prassni, J.-S. ; Ropinski, Timo ; Mensmann, Jörg ; Hinrichs, Klaus

  • Author_Institution
    Visualization & Comput. Graphics Res. Group (VisCG), Univ. of Munster, Munster, Germany
  • fYear
    2010
  • fDate
    2-5 March 2010
  • Firstpage
    9
  • Lastpage
    16
  • Abstract
    We present a novel classification technique for volume visualization that takes the shape of volumetric features into account. The presented technique enables the user to distinguish features based on their 3D shape and to assign individual optical properties to these. Based on a rough pre-segmentation that can be done by windowing, we exploit the curve-skeleton of each volumetric structure in order to derive a shape descriptor similar to those used in current shape recognition algorithms. The shape descriptor distinguishes three main shape classes: longitudinal, surface-like, and blobby shapes. In contrast to previous approaches, the classification is not performed on a per-voxel level but assigns a uniform shape descriptor to each feature and therefore allows a more intuitive user interface for the assignment of optical properties. By using the proposed technique, it becomes for instance possible to distinguish blobby heart structures filled with contrast agents from potentially occluding vessels and rib bones. After introducing the basic concepts, we show how the presented technique performs on real world data, and we discuss current limitations.
  • Keywords
    cardiology; data visualisation; pattern classification; shape recognition; user interfaces; 3D shape; blobby heart structures; curve skeleton; longitudinal shapes; occluding vessels; optical properties; rib bones; rough presegmentation; shape descriptor; shape recognition algorithms; shapebased transfer functions; surface like shapes; user interface; volume visualization pipeline; volumetric feature classification; Bones; Computer graphics; Heart; Multidimensional systems; Rough surfaces; Shape; Surface roughness; Transfer functions; User interfaces; Visualization;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Visualization Symposium (PacificVis), 2010 IEEE Pacific
  • Conference_Location
    Taipei
  • Print_ISBN
    978-1-4244-6685-6
  • Electronic_ISBN
    978-1-4244-6686-3
  • Type

    conf

  • DOI
    10.1109/PACIFICVIS.2010.5429624
  • Filename
    5429624