Fluctuation preserving coarse graining for biochemical systems
Abstract
Finite stochastic Markov models play a major role for modelling biochemical pathways. Such models are a coarse-grained description of the underlying microscopic dynamics and can be considered mesoscopic. The level of coarse-graining is to a certain extend arbitrary since it depends on the resolution of accomodating measurements. Here, we present a way to simplify such stochastic descriptions, which preserves both the meso-micro and the meso-macro connection. The former is achieved by demanding locality, the latter by considering cycles on the network of states. Using single- and multicycle examples we demonstrate how our new method preserves fluctuations of observables much better than na\"ive approaches.
Cite
@article{arxiv.1112.4745,
title = {Fluctuation preserving coarse graining for biochemical systems},
author = {Bernhard Altaner and Jürgen Vollmer},
journal= {arXiv preprint arXiv:1112.4745},
year = {2012}
}
Comments
PACS: 87.10.Mn, 05.40.-a, 05.70.Ln, 87.18.Tt (4 pages, 4 figures)