Stochastic simulation of chemical reactions in spatially complex media


Autoria(s): Nicolau, Jr, Dan; Burrage, Kevin
Data(s)

2008

Resumo

Discrete stochastic simulations, via techniques such as the Stochastic Simulation Algorithm (SSA) are a powerful tool for understanding the dynamics of chemical kinetics when there are low numbers of certain molecular species. However, an important constraint is the assumption of well-mixedness and homogeneity. In this paper, we show how to use Monte Carlo simulations to estimate an anomalous diffusion parameter that encapsulates the crowdedness of the spatial environment. We then use this parameter to replace the rate constants of bimolecular reactions by a time-dependent power law to produce an SSA valid in cases where anomalous diffusion occurs or the system is not well-mixed (ASSA). Simulations then show that ASSA can successfully predict the temporal dynamics of chemical kinetics in a spatially constrained environment.

Identificador

http://eprints.qut.edu.au/44632/

Publicador

Pergamon

Relação

DOI:10.1016/j.camwa.2006.12.085

Nicolau, Jr, Dan & Burrage, Kevin (2008) Stochastic simulation of chemical reactions in spatially complex media. Computers and Mathematics with Applications, 55(5), pp. 1007-1018.

Fonte

Faculty of Science and Technology; Mathematical Sciences

Palavras-Chave #010200 APPLIED MATHEMATICS #010300 NUMERICAL AND COMPUTATIONAL MATHEMATICS #080200 COMPUTATION THEORY AND MATHEMATICS #Stochastic simulation, Chemical reactions, Anomalous diffusion, Obstacles, Lateral segregation, Monte Carlo
Tipo

Journal Article