The criticality hypothesis: how local cortical networks might optimize information processing

Author:

Beggs John M1

Affiliation:

1. Department of Physics, Indiana UniversityBloomington, IN 47405, USA

Abstract

Early theoretical and simulation work independently undertaken by Packard, Langton and Kauffman suggested that adaptability and computational power would be optimized in systems at the ‘edge of chaos’, at a critical point in a phase transition between total randomness and boring order. This provocative hypothesis has received much attention, but biological experiments supporting it have been relatively few. Here, we review recent experiments on networks of cortical neurons, showing that they appear to be operating near the critical point. Simulation studies capture the main features of these data and suggest that criticality may allow cortical networks to optimize information processing. These simulations lead to predictions that could be tested in the near future, possibly providing further experimental evidence for the criticality hypothesis.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference57 articles.

1. Spatiotemporal firing patterns in the frontal cortex of behaving monkeys

2. Alessio R. Cozzi L. D'Angelo P. & Sanguinetti V. 2006 Cultures of dissociated neurons display a variety of avalanche behaviors. In ESANN'2006 Proc.—European Symp. on Artificial Neural Networks Bruges Belgium 26–28 April 2006 .

3. Bak P How nature works: the science of self-organized criticality. 1996 New York NY:Copernicus.

4. Adaptive learning by extremal dynamics and negative feedback

5. Self-organized criticality: An explanation of the 1/fnoise

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