• Title of article

    Higher order optimization and adaptive numerical solution for optimal control of monodomain equations in cardiac electrophysiology

  • Author/Authors

    Nagaiah، نويسنده , , Chamakuri and Kunisch، نويسنده , , Karl، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    13
  • From page
    53
  • To page
    65
  • Abstract
    In this work adaptive and high resolution numerical discretization techniques are demonstrated for solving optimal control of the monodomain equations in cardiac electrophysiology. A monodomain model, which is a well established model for describing the wave propagation of the action potential in the cardiac tissue, will be employed for the numerical experiments. The optimal control problem is considered as a PDE constrained optimization problem. We present an optimal control formulation for the monodomain equations with an extra-cellular current as the control variable which must be determined in such a way that excitations of the transmembrane voltage are damped in an optimal manner. cus of this work is on the development and implementation of an efficient numerical technique to solve an optimal control problem related to a reaction–diffusions system arising in cardiac electrophysiology. Specifically a Newton-type method for the monodomain model is developed. The numerical treatment is enhanced by using a second order time stepping method and adaptive grid refinement techniques. The numerical results clearly show that super-linear convergence is achieved in practice.
  • Keywords
    Monodomain model , Reaction–diffusion equations , PDE constraint optimization , Adaptive FEM , Newtonיs optimization algorithm
  • Journal title
    Applied Numerical Mathematics
  • Serial Year
    2011
  • Journal title
    Applied Numerical Mathematics
  • Record number

    1529600