• Title of article

    A multiscale, spatially distributed model of asthmatic airway hyper-responsiveness

  • Author/Authors

    Politi، نويسنده , , Antonio Z. and Donovan، نويسنده , , Graham M. and Tawhai، نويسنده , , Merryn H. and Sanderson، نويسنده , , Michael J. and Lauzon، نويسنده , , Anne-Marie and Bates، نويسنده , , Jason H.T. and Sneyd، نويسنده , , James، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2010
  • Pages
    11
  • From page
    614
  • To page
    624
  • Abstract
    We present a multiscale, spatially distributed model of lung and airway behaviour with the goal of furthering the understanding of airway hyper-responsiveness and asthma. The model provides an initial computational framework for linking events at the cellular and molecular levels, such as Ca2+ and crossbridge dynamics, to events at the level of the entire organ. At the organ level, parenchymal tissue is modelled using a continuum approach as a compressible, hyperelastic material in three dimensions, with expansion and recoil of lung tissue due to tidal breathing. The governing equations of finite elasticity deformation are solved using a finite element method. The airway tree is embedded in this tissue, where each airway is modelled with its own airway wall, smooth muscle and surrounding parenchyma. The tissue model is then linked to models of the crossbridge mechanics and their control by Ca2+ dynamics, thus providing a link to molecular and cellular mechanisms in airway smooth muscle cells. By incorporating and coupling the models at these scales, we obtain a detailed, computational multiscale model incorporating important physiological phenomena associated with asthma.
  • Keywords
    Actin–myosin , Calcium , Smooth muscle cells , tethering , crossbridge
  • Journal title
    Journal of Theoretical Biology
  • Serial Year
    2010
  • Journal title
    Journal of Theoretical Biology
  • Record number

    1540338