When correlations matter - response of dynamical networks to small perturbations
Abstract
We systematically study and compare damage spreading for random Boolean and threshold networks under small external perturbations (damage), a problem which is relevant to many biological networks. We identify a new characteristic connectivity , at which the average number of damaged nodes after a large number of dynamical updates is independent of the total number of nodes . We estimate the critical connectivity for finite and show that it systematically deviates from the annealed approximation. Extending the approach followed in a previous study, we present new results indicating that internal dynamical correlations tend to increase not only the probability for small, but also for very large damage events, leading to a broad, fat-tailed distribution of damage sizes. These findings indicate that the descriptive and predictive value of averaged order parameters for finite size networks - even for biologically highly relevant sizes up to several thousand nodes - is limited.
Cite
@article{arxiv.0804.4498,
title = {When correlations matter - response of dynamical networks to small perturbations},
author = {Thimo Rohlf and Natali Gulbahce and Christof Teuscher},
journal= {arXiv preprint arXiv:0804.4498},
year = {2008}
}
Comments
4 pages, 4 figures. Accepted for the "Workshop on Computational Systems Biology", Leipzig 2008