Publication | Closed Access
Simulating Biochemical Networks at the Particle Level and in Time and Space: Green’s Function Reaction Dynamics
187
Citations
20
References
2005
Year
Biophysical ModelingFunction Reaction DynamicsEngineeringBiochemical NetworksMathematical BiophysicsMolecular BiologyMolecular DynamicsMolecular SimulationBiological ModelReaction ProcessBiophysicsBiochemistryGene ExpressionParticle LevelReaction-diffusion SystemsNatural SciencesComputational BiologySystems BiologyBiological ComputationChemical KineticsComputational Biophysics
We present a technique, called Green's function reaction dynamics (GFRD), for particle-based simulations of reaction-diffusion systems. GFRD uses a maximum time step such that only single particles or pairs of particles have to be considered. For these particles, the Smoluchowski equations are solved analytically using Green's functions, which are used to set up an event-driven algorithm. We apply the technique to a model of gene expression. Under biologically relevant conditions, GFRD is up to 5 orders of magnitude faster than conventional particle-based schemes.
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