• DocumentCode
    2422208
  • Title

    Large-scale integrated model is useful for understanding heart mechanisms and developments of medical therapy

  • Author

    Washio, Takumi ; Okada, Jun-Ichi ; Sugiura, Seiryo ; Hisada, Toshiaki

  • Author_Institution
    Grad. Sch. of Frontier Sci., Univ. of Tokyo, Chiba, Japan
  • fYear
    2009
  • fDate
    3-6 Sept. 2009
  • Firstpage
    2347
  • Lastpage
    2350
  • Abstract
    In this paper, we discuss the need for a large-scale integrated computer heart model to understand cardiac pathophysiology and to assist in the development of novel treatments through our experiences with the ldquoUT-heartrdquo simulator. The UT-heart simulator is a multi-scale, multi-physics heart simulator that integrates and visualizes our knowledge of cardiac function in various aspects and scales. To demonstrate the usefulness of this model, we focus especially on two problems in cardiac anatomy and physiology. In the first application, the mechanistic implication of complex fiber and laminar structures is analyzed with respect to optimality of pumping performance. In the second application, the coronary circulation is analyzed, to identify factors that determine the behavior of the microcirculatory system. These two examples indicate not only the importance of the integration technique, but also the need to resolve structural complexities of the heart in the modeling. This leads naturally to incorporating high performance computing in medical therapy.
  • Keywords
    cardiology; diseases; flow simulation; haemorheology; medical computing; patient treatment; physiological models; UT-heart simulator; cardiac anatomy; cardiac function; cardiac pathophysiology; cardiac physiology; coronary circulation; heart mechanisms; heart structural complexities; high-performance computing; laminar structures; large-scale integrated computer heart model; medical therapy; microcirculatory system; multiscale multiphysics heart simulator; Biomechanics; Biomedical Engineering; Blood Pressure; Cardiovascular System; Computer Simulation; Coronary Circulation; Equipment Design; Finite Element Analysis; Heart; Humans; Microcirculation; Models, Anatomic; Models, Biological; Time Factors;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Engineering in Medicine and Biology Society, 2009. EMBC 2009. Annual International Conference of the IEEE
  • Conference_Location
    Minneapolis, MN
  • ISSN
    1557-170X
  • Print_ISBN
    978-1-4244-3296-7
  • Electronic_ISBN
    1557-170X
  • Type

    conf

  • DOI
    10.1109/IEMBS.2009.5335029
  • Filename
    5335029