Physically consistent simulation of mesoscale chemical kinetics: The non-negative FIS-alpha method
Data(s) |
01/10/2011
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Resumo |
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 alpha (FIS alpha) 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. (C) 2011 Elsevier Inc. All rights reserved. |
Formato |
application/pdf |
Identificador |
http://eprints.iisc.ernet.in/42631/1/Phusically.pdf Dana, Saswati and Raha, Soumyendu (2011) Physically consistent simulation of mesoscale chemical kinetics: The non-negative FIS-alpha method. In: Journal of Computational Physics, 230 (24). pp. 8813-8834. |
Publicador |
Elsevier Science |
Relação |
http://dx.doi.org/10.1016/j.jcp.2011.07.032 http://eprints.iisc.ernet.in/42631/ |
Palavras-Chave | #Supercomputer Education & Research Centre |
Tipo |
Journal Article PeerReviewed |