• DocumentCode
    1421666
  • Title

    Feature-Preserving Volume Data Reduction and Focus+Context Visualization

  • Author

    Wang, Yu-Shuen ; Wang, Chaoli ; Lee, Tong-Yee ; Ma, Kwan-Liu

  • Author_Institution
    CSIE, Nat. Cheng Kung Univ., Tainan, Taiwan
  • Volume
    17
  • Issue
    2
  • fYear
    2011
  • Firstpage
    171
  • Lastpage
    181
  • Abstract
    The growing sizes of volumetric data sets pose a great challenge for interactive visualization. In this paper, we present a feature-preserving data reduction and focus+context visualization method based on transfer function driven, continuous voxel repositioning and resampling techniques. Rendering reduced data can enhance interactivity. Focus+context visualization can show details of selected features in context on display devices with limited resolution. Our method utilizes the input transfer function to assign importance values to regularly partitioned regions of the volume data. According to user interaction, it can then magnify regions corresponding to the features of interest while compressing the rest by deforming the 3D mesh. The level of data reduction achieved is significant enough to improve overall efficiency. By using continuous deformation, our method avoids the need to smooth the transition between low and high-resolution regions as often required by multiresolution methods. Furthermore, it is particularly attractive for focus+context visualization of multiple features. We demonstrate the effectiveness and efficiency of our method with several volume data sets from medical applications and scientific simulations.
  • Keywords
    data reduction; data visualisation; display devices; transfer functions; very large databases; 3D mesh; continuous deformation; continuous voxel repositioning; data rendering; display devices; feature-preserving volume data reduction; focus+context visualization; interactive visualization; multiresolution methods; resampling techniques; transfer function; user interaction; volumetric data sets; Biomedical equipment; Chaos; Costs; Data visualization; Displays; Energy resolution; Medical services; Medical simulation; Runtime; Transfer functions; Data reduction; focus+context visualization; interactive visualization; mesh deformation; transfer functions; volume rendering.;
  • fLanguage
    English
  • Journal_Title
    Visualization and Computer Graphics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1077-2626
  • Type

    jour

  • DOI
    10.1109/TVCG.2010.34
  • Filename
    5416703