Brainstem fMRI signaling of surprise across different types of deviant stimuli

  • Audrey Mazancieux
  • Franck Mauconduit
  • Alexis Amadon
  • Jan Willem de Gee
  • Tobias H Donner
  • Florent Meyniel

Abstract

Detection of deviant stimuli is crucial to orient and adapt our behavior. Previous work shows that deviant stimuli elicit phasic activation of the locus coeruleus (LC), which releases noradrenaline and controls central arousal. However, it is unclear whether the detection of behaviorally relevant deviant stimuli selectively triggers LC responses or other neuromodulatory systems (dopamine, serotonin, and acetylcholine). We combine human functional MRI (fMRI) recordings optimized for brainstem imaging with pupillometry to perform a mapping of deviant-related responses in subcortical structures. Participants have to detect deviant items in a "local-global" paradigm that distinguishes between deviance based on the stimulus probability and the sequence structure. fMRI responses to deviant stimuli are distributed in many cortical areas. Both types of deviance elicit responses in the pupil, LC, and other neuromodulatory systems. Our results reveal that the detection of task-relevant deviant items recruits the same multiple subcortical systems across computationally different types of deviance.

Bibliografische Daten

OriginalspracheEnglisch
ISSN2211-1247
DOIs
StatusVeröffentlicht - 28.11.2023

Anmerkungen des Dekanats

Copyright © 2023 The Author(s). Published by Elsevier Inc. All rights reserved.

PubMed 37950868