Published March 27, 1992 | Version public
Journal Article

Evidence for a Computational Distinction Between Proximal and Distal Neuronal Inhibition

  • 1. ROR icon University of California, Los Angeles

Abstract

Most neurons have inhibitory synapses both "proximally" near the spike-initiating zone and "distally" on dendrites. Although distal inhibition is thought to be an adaptation for selective inhibition of particular dendritic branches, another important distinction exists between proximal and distal inhibition. Proximal inhibition can attenuate excitatory input absolutely so that no amount of excitation causes firing. Distal inhibition, however, inhibits relatively; any amount of it can be overcome by sufficient excitation. These properties are used as predicted in the circuit-mediating crayfish escape behavior. Many neuronal computations require relative inhibition. This could partly account for the ubiquity of distal inhibition.

Additional Information

© 1992 American Association for the Advancement of Science. Received 11 October 1991; accepted 14 January 1992. We thank M. Konishi and C. Koch for discussion and T. Teshiba for technical assistance. Supported by a predoctoral NSF fellowship to E.T.V. and by National Institute of Neurological Diseases and Stroke grant NS-08108.

Additional details

Identifiers

Eprint ID
53620
Resolver ID
CaltechAUTHORS:20150113-102809677

Related works

Funding

NSF Graduate Research Fellowship
NIH
NS-08108
National Institute of Neurological Diseases and Stroke

Dates

Created
2015-01-13
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Updated
2021-11-10
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