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
Pages
22
From page
8813
To page
8834
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
Serial Year
2011
Journal title
Journal of Computational Physics
Record number
1483994
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