The labile brain. II. Transients, complexity and selection
Open Access
- 29 February 2000
- journal article
- review article
- Published by The Royal Society in Philosophical Transactions Of The Royal Society B-Biological Sciences
- Vol. 355 (1394) , 237-252
- https://doi.org/10.1098/rstb.2000.0561
Abstract
The successive expression of neuronal transients is related to dynamic correlations and, as shown in this paper, to dynamic instability. Dynamic instability is a form of complexity, typical of neuronal systems, which may be crucial for adaptive brain function from two perspectives. The first is from the point of view of neuronal selection and self–organizing systems: if selective mechanisms underpin the emergence of adaptive neuronal responses then dynamic instability is, itself, necessarily adaptive. This is because dynamic instability is the source of diversity on which selection acts and is therefore subject to selective pressure. In short, the emergence of order, through selection, depends almost paradoxically on the instabilities that characterize the diversity of brain dynamics. The second perspective is provided by information theory.Keywords
This publication has 31 references indexed in Scilit:
- Modulation of connectivity in visual pathways by attention: cortical interactions evaluated with structural equation modelling and fMRICerebral Cortex, 1997
- Synaptic Depression and Cortical Gain ControlScience, 1997
- Distinct Mechanisms for Synchronization and Temporal Patterning of Odor-Encoding Neural AssembliesScience, 1996
- Neuronal networks for induced ‘40 Hz’ rhythmsTrends in Neurosciences, 1996
- Role of Reticular Activation in the Modulation of Intracortical SynchronizationScience, 1996
- From Complexity to PerplexityScientific American, 1995
- Dynamics of neuronal interactions in monkey cortex in relation to behavioural eventsNature, 1995
- Neural Darwinism: Selection and reentrant signaling in higher brain functionNeuron, 1993
- Stimulus-specific neuronal oscillations in orientation columns of cat visual cortex.Proceedings of the National Academy of Sciences, 1989
- Modulation of visual cortical plasticity by acetylcholine and noradrenalineNature, 1986