Scientific article
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English

An increase in dendritic plateau potentials is associated with experience-dependent cortical map reorganization

Publication date2021-02-22
First online date2021-02-22
Abstract

Significance

Here we describe a mechanism for cortical map plasticity. Classically, representational map changes are thought to be driven by changes within cortico-cortical circuits, e.g., Hebbian plasticity of synaptic circuits that lost vs. maintained an excitatory drive from the first-order thalamus, possibly steered by neuromodulatory forces from deep brain regions. Our work provides evidence for an additional gating mechanism, provided by plateau potentials, which are driven by higher-order thalamic feedback. Higher-order thalamic neurons are characterized by broad receptive fields, and the plateau potentials that they evoke strongly facilitate long-term potentiation and elicit spikes. We show that these features combined constitute a powerful driving force for the fusion or expansion of sensory representations within cortical maps.

Keywords
  • Barrel cortex
  • Dendritic signaling
  • Posterior medial complex of the thalamus
  • Somatosensory
  • Synaptic plasticity
Funding
  • Swiss National Science Foundation - NCCR SYNAPSY: The synaptic bases of mental diseases (phase II)
Citation (ISO format)
PAGES, Stéphane et al. An increase in dendritic plateau potentials is associated with experience-dependent cortical map reorganization. In: Proceedings of the National Academy of Sciences of the United States of America, 2021, vol. 118, n° 9, p. e2024920118. doi: 10.1073/pnas.2024920118
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Supplemental data
Identifiers
Additional URL for this publicationhttps://pnas.org/doi/full/10.1073/pnas.2024920118
Journal ISSN0027-8424
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Technical informations

Creation26/09/2022 14:34:00
First validation26/09/2022 14:34:00
Update16/03/2023 07:40:46
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