• DocumentCode
    1817933
  • Title

    Quantitative visualization in the computational biological sciences

  • Author

    Bajaj, Chandrajit

  • Author_Institution
    Univ. of Texas at Austin, Austin, TX, USA
  • fYear
    2012
  • fDate
    Feb. 28 2012-March 2 2012
  • Abstract
    Discoveries in computational molecular - cell biology and bioinformatics promise to provide new therapeutic interventions to disease. With the rapid growth of sequence and structural information for thousands of proteins and hundreds of cell types, computational processing are a restricting factor in obtaining quantitative understanding of molecular-cellular function. Processing and analysis is necessary both for input data (often from imaging) and simulation results. To make biological conclusions, this data must be input to and combined with results from computational analysis and simulations. Furthermore, as parallelism is increasingly prevalent, utilizing the available processing power is essential to development of scalable solutions needed for realistic scientific inquiry. However, complex image processing and even simulations performed on large clusters, multi-core CPU, GPU-type parallelization means that naïve cache unaware algorithms may not efficiently utilize available hardware. Future gains thus require improvements to a core suite of algorithms underpinning the data processing, simulation, optimization and visualization needed for scientific discovery. In this talk, I shall highlight current progress on these algorithms as well as provide several challenges for the visualization community.
  • Keywords
    bioinformatics; cellular biophysics; data visualisation; diseases; graphics processing units; image processing; proteins; GPU-type parallelization; Naive cache unaware algorithms; bioinformatics; biological conclusions; cell biology; complex image processing; computational analysis; computational biological sciences; computational molecular discoveries; computational processing; computational simulations; data processing; molecular-cellular function; multicore CPU; quantitative visualization; scientific discovery; structural information; therapeutic interventions;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Visualization Symposium (PacificVis), 2012 IEEE Pacific
  • Conference_Location
    Songdo
  • ISSN
    2165-8765
  • Print_ISBN
    978-1-4673-0863-2
  • Electronic_ISBN
    2165-8765
  • Type

    conf

  • DOI
    10.1109/PacificVis.2012.6183567
  • Filename
    6183567