Random Neural Networks with Negative and Positive Signals and Product Form Solution

Author:

Gelenbe Erol1

Affiliation:

1. Ecole des Hautes Etudes en Informatique (EHEI), Université Paris V, 45 rue des Saints-Pères, 75006 Paris, France

Abstract

We introduce a new class of random “neural” networks in which signals are either negative or positive. A positive signal arriving at a neuron increases its total signal count or potential by one; a negative signal reduces it by one if the potential is positive, and has no effect if it is zero. When its potential is positive, a neuron “fires,” sending positive or negative signals at random intervals to neurons or to the outside. Positive signals represent excitatory signals and negative signals represent inhibition. We show that this model, with exponential signal emission intervals, Poisson external signal arrivals, and Markovian signal movements between neurons, has a product form leading to simple analytical expressions for the system state.

Publisher

MIT Press - Journals

Subject

Cognitive Neuroscience,Arts and Humanities (miscellaneous)

Reference4 articles.

1. Rumelhart, D. E., McClelland, J. L., and the PDP Research Group. 1986. Purallel Distributed Processing, Vols. I and 11. Bradford Books and MIT Press, Cambridge, MA.

2. Gelenbe, E., and Mitrani, I. 1980. Analysis and Synthesis of Computer Systems. Academic Press, London.

3. Gelenbe, E., and Pujolle, G. 1986. Introduction to Networks of Queues. Wiley, New York.

4. Kandel, E. C., and Schwartz, J. H. 1985. Principles of Neural Science. Elsevier, Amsterdam.

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