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Thalamic activation of the visual cortex at the single-synapse level

  • Yang Chen
  • , Marinus Kloos
  • , Zsuzsanna Varga
  • , Yonghai Zhang
  • , Inken Piro
  • , Tatsuo K. Sato
  • , Bert Sakmann
  • , Israel Nelken
  • , Arthur Konnerth*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Deciphering thalamocortical (Tc) activation at the level of individual synapses is essential to understanding how the cortex processes sensory information. In this work, we studied Tc computation underlying the emergence of orientation selectivity in the mammalian primary visual cortex (V1). Using two-photon glutamate imaging and optogenetic cortical silencing in vivo, we identified and characterized Tc synapses onto mouse V1 layer 4 neurons. We found that Tc- but not corticocortical-recipient spines lacked postsynaptic ca2+ signals. Our results directly validate the core predictions of hubel and Wiesel’s feedforward model and reveal distinctive synaptic properties that are critical for cortical computation and plasticity.

Original languageEnglish
Pages (from-to)1349-1354
Number of pages6
JournalScience
Volume391
Issue number6792
DOIs
StatePublished - 26 Mar 2026

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