SIMULATION OF LARGE SCALE CORTICAL NETWORKS BY INDIVIDUAL NEURON DYNAMICS

Author:

SCHMIDT G.1,ZAMORA-LÓPEZ G.1,KURTHS J.23

Affiliation:

1. Interdisciplinary Center for Dynamics of Complex Systems, University of Potsdam, 14469 Potsdam, Germany

2. Potsdam Institute for Climate Impact Research, Telegrafenberg A 31, Postfach 601203, 14412 Potsdam, Germany

3. Institute of Physics, Humboldt University, Newtonstr. 15, 12489 Berlin, Germany

Abstract

Understanding the functional dynamics of the mammalian brain is one of the central aims of modern neuroscience. Mathematical modeling and computational simulations of neural networks can help in this quest. In recent publications, a multilevel model has been presented to simulate the resting-state dynamics of the cortico-cortical connectivity of the mammalian brain. In the present work we investigate how much of the dynamical behavior of the multilevel model can be reproduced by a strongly simplified model. We find that replacing each cortical area by a single Rulkov map recreates the patterns of dynamical correlation of the multilevel model, while the outcome of other models and setups mainly depends on the local network properties, e.g. the input degree of each vertex. In general, we find that a simple simulation whose dynamics depends on the global topology of the whole network is far from trivial. A systematic analysis of different dynamical models and coupling setups is required.

Publisher

World Scientific Pub Co Pte Lt

Subject

Applied Mathematics,Modeling and Simulation,Engineering (miscellaneous)

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