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NASA NTRS · 20020051394

Cellular and Network Mechanisms Underlying Information Processing in a Simple Sensory System

Abstract

Realistic, biophysically-based compartmental models were constructed of several primary sensory interneurons in the cricket cercal sensory system. A dynamic atlas of the afferent input to these cells was used to set spatio-temporal parameters for the simulated stimulus-dependent synaptic inputs. We examined the roles of dendritic morphology, passive membrane properties, and active conductances on the frequency tuning of the neurons. The sensitivity of narrow-band low pass interneurons could be explained entirely by the electronic structure of the dendritic arbors and the dynamic sensitivity of the SIZ. The dynamic characteristics of interneurons with higher frequency sensitivity required models with voltage-dependent dendritic conductances.

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BibTeXRIS

Jacobs, Gwen, Henze, Chris, Biegel, Bryan. 2002-01-01. Cellular and Network Mechanisms Underlying Information Processing in a Simple Sensory System. https://ntrs.nasa.gov/citations/20020051394

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