Emergence of spatiotemporal invariance in large neuronal ensembles in rat barrel cortex.

Invariant sensory coding is the robust coding of some sensory information (e.g. stimulus type) despite major changes in other sensory parameters (e.g. stimulus strength). The contribution of large populations of neurons (ensembles) to invariant sensory coding is not well understood, but could offer...

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Main Authors: Nathan S Jacobs, Cynthia H Chen-Bee, Ron D Frostig
Format: Article
Language:English
Published: Frontiers Media S.A. 2015-07-01
Series:Frontiers in Neural Circuits
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fncir.2015.00034/full
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spelling doaj-b6f664110415425a8000e33c0f8b356d2020-11-24T22:15:27ZengFrontiers Media S.A.Frontiers in Neural Circuits1662-51102015-07-01910.3389/fncir.2015.00034144687Emergence of spatiotemporal invariance in large neuronal ensembles in rat barrel cortex.Nathan S Jacobs0Nathan S Jacobs1Cynthia H Chen-Bee2Cynthia H Chen-Bee3Ron D Frostig4Ron D Frostig5Ron D Frostig6University of California, IrvineCenter for the Neurobiology of Learning and MemoryUniversity of California, IrvineCenter for the Neurobiology of Learning and MemoryUniversity of California, IrvineCenter for the Neurobiology of Learning and MemoryDepartment of Biomedical Engineering, University of California, IrvineInvariant sensory coding is the robust coding of some sensory information (e.g. stimulus type) despite major changes in other sensory parameters (e.g. stimulus strength). The contribution of large populations of neurons (ensembles) to invariant sensory coding is not well understood, but could offer distinct advantages over invariance in single cell receptive fields. To test invariant sensory coding in neuronal ensembles evoked by single whisker stimulation as early as primary sensory cortex, we recorded detailed spatiotemporal movies of evoked ensemble activity through the depth of rat barrel cortex using microelectrode arrays. We found that an emergent property of whisker evoked ensemble activity, its spatiotemporal profile, was notably invariant across major changes in stimulus amplitude (up to >200 fold). Such ensemble-based invariance was found for single whisker stimulation as well as for the integrated profile of activity evoked by the more naturalistic stimulation of the entire whisker array. Further, the integrated profile of whisker array evoked ensemble activity and its invariance to stimulus amplitude shares striking similarities to 'funneled' tactile perception in humans. We therefore suggest that ensemble-based invariance could provide a robust neurobiological substrate for invariant sensory coding and integration at an early stage of cortical sensory processing already in primary sensory cortex.http://journal.frontiersin.org/Journal/10.3389/fncir.2015.00034/fullbarrel cortexmulti-site recordingStimulus Invariancewhisker arraysensory funneling
collection DOAJ
language English
format Article
sources DOAJ
author Nathan S Jacobs
Nathan S Jacobs
Cynthia H Chen-Bee
Cynthia H Chen-Bee
Ron D Frostig
Ron D Frostig
Ron D Frostig
spellingShingle Nathan S Jacobs
Nathan S Jacobs
Cynthia H Chen-Bee
Cynthia H Chen-Bee
Ron D Frostig
Ron D Frostig
Ron D Frostig
Emergence of spatiotemporal invariance in large neuronal ensembles in rat barrel cortex.
Frontiers in Neural Circuits
barrel cortex
multi-site recording
Stimulus Invariance
whisker array
sensory funneling
author_facet Nathan S Jacobs
Nathan S Jacobs
Cynthia H Chen-Bee
Cynthia H Chen-Bee
Ron D Frostig
Ron D Frostig
Ron D Frostig
author_sort Nathan S Jacobs
title Emergence of spatiotemporal invariance in large neuronal ensembles in rat barrel cortex.
title_short Emergence of spatiotemporal invariance in large neuronal ensembles in rat barrel cortex.
title_full Emergence of spatiotemporal invariance in large neuronal ensembles in rat barrel cortex.
title_fullStr Emergence of spatiotemporal invariance in large neuronal ensembles in rat barrel cortex.
title_full_unstemmed Emergence of spatiotemporal invariance in large neuronal ensembles in rat barrel cortex.
title_sort emergence of spatiotemporal invariance in large neuronal ensembles in rat barrel cortex.
publisher Frontiers Media S.A.
series Frontiers in Neural Circuits
issn 1662-5110
publishDate 2015-07-01
description Invariant sensory coding is the robust coding of some sensory information (e.g. stimulus type) despite major changes in other sensory parameters (e.g. stimulus strength). The contribution of large populations of neurons (ensembles) to invariant sensory coding is not well understood, but could offer distinct advantages over invariance in single cell receptive fields. To test invariant sensory coding in neuronal ensembles evoked by single whisker stimulation as early as primary sensory cortex, we recorded detailed spatiotemporal movies of evoked ensemble activity through the depth of rat barrel cortex using microelectrode arrays. We found that an emergent property of whisker evoked ensemble activity, its spatiotemporal profile, was notably invariant across major changes in stimulus amplitude (up to >200 fold). Such ensemble-based invariance was found for single whisker stimulation as well as for the integrated profile of activity evoked by the more naturalistic stimulation of the entire whisker array. Further, the integrated profile of whisker array evoked ensemble activity and its invariance to stimulus amplitude shares striking similarities to 'funneled' tactile perception in humans. We therefore suggest that ensemble-based invariance could provide a robust neurobiological substrate for invariant sensory coding and integration at an early stage of cortical sensory processing already in primary sensory cortex.
topic barrel cortex
multi-site recording
Stimulus Invariance
whisker array
sensory funneling
url http://journal.frontiersin.org/Journal/10.3389/fncir.2015.00034/full
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