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    Enabling the interactive display of large medical volume datasets by multiresolution bricking

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    Authors
    Agrawal, Anupam
    Kohout, Josef
    Clapworthy, Gordon J.
    McFarlane, Nigel J.B.
    Dong, Feng
    Viceconti, Marco
    Taddei, Fulvia
    Testi, Debora
    Issue Date
    2010
    Subjects
    medical visualization
    large volume data sets
    out-of-core processing
    multiresolution bricking
    VTK
    
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    Abstract
    In this paper, we present an approach to interactive out-of-core volume data exploration that has been developed to augment the existing capabilities of the LhpBuilder software, a core component of the European project LHDL (http://www.biomedtown.org/biomed_town/lhdl). The requirements relate to importing, accessing, visualizing and extracting a part of a very large volume dataset by interactive visual exploration. Such datasets contain billions of voxels and, therefore, several gigabytes are required just to store them, which quickly surpass the virtual address limit of current 32-bit PC platforms. We have implemented a hierarchical, bricked, partition-based, out-of-core strategy to balance the usage of main and external memories. A new indexing scheme is introduced, which permits the use of a multiresolution bricked volume layout with minimum overhead and also supports fast data compression. Using the hierarchy constructed in a pre-processing step, we generate a coarse approximation that provides a preview using direct volume visualization for large-scale datasets. A user can interactively explore the dataset by specifying a region of interest (ROI), which further generates a much more accurate data representation inside the ROI. If even more precise accuracy is needed inside the ROI, nested ROIs are used. The software has been constructed using the Multimod Application Framework, a VTK-based system; however, the approach can be adopted for the other systems in a straightforward way. Experimental results show that the user can interactively explore large volume datasets such as the Visible Human Male/Female (with file sizes of 3.15/12.03 GB, respectively) on a commodity graphics platform, with ease.
    Citation
    Agrawal, A., Kohout, J., Clapworthy, G.J., McFarlane, N.J.B., Dong, F., Viceconti, M., Taddei, F. & Testi, D. (2009) 'Enabling the interactive display of large medical volume datasets by multiresolution bricking', The Journal of Supercomputing, 51 (1), pp.3-19.
    Publisher
    Springer
    Journal
    The Journal of Supercomputing
    URI
    http://hdl.handle.net/10547/224102
    DOI
    10.1007/s11227-009-0289-2
    Additional Links
    https://link.springer.com/article/10.1007/s11227-009-0289-2
    Type
    Article
    Language
    en
    ISSN
    0920-8542
    1573-0484
    ae974a485f413a2113503eed53cd6c53
    10.1007/s11227-009-0289-2
    Scopus Count
    Collections
    Centre for Computer Graphics and Visualisation (CCGV)

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