Title of article :
Physically consistent simulation of mesoscale chemical kinetics: The non-negative FIS-α method
Author/Authors :
Dana، نويسنده , , Saswati and Raha، نويسنده , , Soumyendu، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Abstract :
Biochemical pathways involving chemical kinetics in medium concentrations (i.e., at mesoscale) of the reacting molecules can be approximated as chemical Langevin equations (CLE) systems. We address the physically consistent non-negative simulation of the CLE sample paths as well as the issue of non-Lipschitz diffusion coefficients when a species approaches depletion and any stiffness due to faster reactions. The non-negative Fully Implicit Stochastic α (FIS α) method in which stopped reaction channels due to depleted reactants are deleted until a reactant concentration rises again, for non-negativity preservation and in which a positive definite Jacobian is maintained to deal with possible stiffness, is proposed and analysed. The method is illustrated with the computation of active Protein Kinase C response in the Protein Kinase C pathway.
Keywords :
Chemical Langevin equations , Stiff stochastic differential equations , Meso-scale kinetics , Implicit method of numerical integration
Journal title :
Journal of Computational Physics
Journal title :
Journal of Computational Physics