Mean Field Theory of a Neural Network.
Leon N. Cooper, Christopher L. Scofield · 1988
A single-cell theory for the development of selectivity and ocular dominance in visual cortex has been gen- eralized to incorporate more realistic neural networks that ap- proximate the actual anatomy of small regions of cortex.In particular, we have analyzed a network consisting of excitato- ry and inhibitor cells, both of which may receive information from the lateral geniculate nucleus (LGN) and then interact through cortico-cortical synapses in a mean-field approxima- tion.Our investigation of the evolution of a cell in this mean- field network indicates that many of the results on existence and stability of fixed points that have been obtained previously in the single-cell theory can be successfully generalized here.We can, in addition, make explicit further statements concern- ing the independent effects of excitatory and inhibitory neu- rons on selectivity and ocular dominance.For example, shut- ting off inhibitory cells lessens selectivity and alters ocular dominance (masked synapses).These inhibitory cells may be selective, but there is no theoretical necessity that they be so.Further, the intercortical inhibitory synapses do not have to be very responsive to visual experience.Most of the learning process can occur among the excitatory LGN-cortical synap- ses.