Modeling Neuronal Assemblies: Theory and Implementation
- 1 September 2001
- journal article
- Published by MIT Press in Neural Computation
- Vol. 13 (9) , 1923-1974
- https://doi.org/10.1162/089976601750399254
Abstract
Models that describe qualitatively and quantitatively the activity of entire groups of spiking neurons are becoming increasingly important for biologically realistic large-scale network simulations. At the systems and areas modeling level, it is necessary to switch the basic descriptional level from single spiking neurons to neuronal assemblies. In this article, we present and review work that allows a macroscopic description of the assembly activity. We show that such macroscopic models can be used to reproduce in a quantitatively exact manner the joint activity of groups of spike-response or integrate-and-fire neurons. We also show that integral as well as differential equation models of neuronal assemblies can be understood within a single framework, which allows a comparison with the commonly used assembly-averaged graded-response type of models. The presented framework thus enables the large-scale neural network modeler to implement networks using computational units beyond the single spiking neuron without losing much biological accuracy. This article explains the theoretical background as well as the capabilities and the implementation details of the assembly approach.Keywords
This publication has 19 references indexed in Scilit:
- Unifying framework for neuronal assembly dynamicsPhysical Review E, 2000
- Reduction of the Hodgkin-Huxley Equations to a Single-Variable Threshold ModelNeural Computation, 1997
- What Matters in Neuronal Locking?Neural Computation, 1996
- Time structure of the activity in neural network modelsPhysical Review E, 1995
- Associative memory in a network of ‘spiking’ neuronsNetwork: Computation in Neural Systems, 1992
- Large Scale Spatially Organized Activity in Neural NetsSIAM Journal on Applied Mathematics, 1980
- A mathematical theory of visual hallucination patternsBiological Cybernetics, 1979
- Temporal oscillations in neuronal netsJournal of Mathematical Biology, 1979
- Large-scale activity in neural nets I: Theory with application to motoneuron pool responsesBiological Cybernetics, 1975
- Reductibilite des systemes hereditairesInternational Journal of Non-Linear Mechanics, 1974