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General properties of the resource consumption principle of neural function
1Division of Neuroscience, Baylor College of Medicine, Houston, TX 77030, USA.
Journal of Physiology, Paris
|January 1, 1996
Abstract:
It has been proposed that volumes of neural tissue may represent important processing elements. This viewpoint suggests one way that populations of synaptic elements cooperate to implement important computational capacities. I extend this view by proposing a set of computational functions for the extracellular space shared by a local population of synapses. The critical hypothesis is the existence of a hypothetical 'fluid' resource present outside synapses that must be internalized in order for a synapse to function. I outline some of the consequences of assuming that such a resource is in limited supply on short time scales.