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Emotional words evoke region- and valence-specific patterns of concurrent neuromodulator release in human thalamus and cortex

  • Seth R. Batten
  • , Alec E. Hartle
  • , Leonardo S. Barbosa
  • , Beniamino Hadj-Amar
  • , Dan Bang
  • , Natalie Melville
  • , Tom Twomey
  • , Jason P. White
  • , Alexis Torres
  • , Xavier Celaya
  • , Samuel M. McClure
  • , Gene A. Brewer
  • , Terry Lohrenz
  • , Kenneth T. Kishida
  • , Robert W. Bina
  • , Mark R. Witcher
  • , Marina Vannucci
  • , Brooks Casas
  • , Pearl Chiu
  • , Pendleton R. Montague
  • William M. Howe

Research output: Contribution to journalArticlepeer-review

Abstract

Words represent a uniquely human information channel—humans use words to express thoughts and feelings and to assign emotional valence to experience. Work from model organisms suggests that valence assignments are carried out in part by the neuromodulators dopamine, serotonin, and norepinephrine. Here, we ask whether valence signaling by these neuromodulators extends to word semantics in humans by measuring sub-second neuromodulator dynamics in the thalamus (N = 13) and anterior cingulate cortex (N = 6) of individuals evaluating positive, negative, and neutrally valenced words. Our combined results suggest that valenced words modulate neuromodulator release in both the thalamus and cortex, but with region- and valence-specific response patterns, as well as hemispheric dependence for dopamine release in the anterior cingulate. Overall, these experiments provide evidence that neuromodulator-dependent valence signaling extends to word semantics in humans, but not in a simple one-valence-per-transmitter fashion.

Original languageEnglish (US)
Article number115162
JournalCell Reports
Volume44
Issue number1
DOIs
StatePublished - Jan 28 2025

Keywords

  • CP: Neuroscience
  • anterior cingulate cortex
  • cortex
  • dopamine
  • electrochemistry
  • emotional valence
  • human brain
  • norepinephrine
  • serotonin
  • thalamus
  • word valence

ASJC Scopus subject areas

  • General Biochemistry, Genetics and Molecular Biology

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