Amygdala and Cortex Relationships during Learning of a Sensory Discrimination Task

David Levitan, Ariel Gilad*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

During learning of a sensory discrimination task, the cortical and subcortical regions display complex spatiotemporal dynamics. During learning, both the amygdala and cortex link stimulus information to its appropriate association, for example, a reward. In addition, both structures are also related to nonsensory parameters such as body movements and licking during the reward period. However, the emergence of the cortico-amygdala relationships during learning is largely unknown. To study this, we combined wide-field cortical imaging with fiber photometry to simultaneously record cortico-amygdala population dynamics as male mice learn a whisker-dependent go/no-go task. We were able to simultaneously record neuronal populations from the posterior cortex and either the basolateral amygdala (BLA) or central/medial amygdala (CEM). Prior to learning, the somatosensory and associative cortex responded during sensation, while amygdala areas did not show significant responses. As mice became experts, amygdala responses emerged early during the sensation period, increasing in the CEM, while decreasing in the BLA. Interestingly, amygdala and cortical responses were associated with task-related body movement, displaying significant responses ∼200 ms before movement initiation which led to licking for the reward. A correlation analysis between the cortex and amygdala revealed negative and positive correlation with the BLA and CEM, respectively, only in the expert case. These results imply that learning induces an involvement of the cortex and amygdala which may aid to link sensory stimuli with appropriate associations.

Original languageEnglish
Article numbere0125242024
JournalJournal of Neuroscience
Volume44
Issue number34
DOIs
StatePublished - 21 Aug 2024

Bibliographical note

Publisher Copyright:
© 2024 the authors.

Keywords

  • basolateral amygdala
  • calcium imaging
  • fiber photometry
  • mouse model
  • whisker system
  • wide-field imaging

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