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Anterior thalamic circuits crucial for working memory

  • Dheeraj S. Roy
  • , Ying Zhang
  • , Tomomi Aida
  • , Chenjie Shen
  • , Keith M. Skaggs
  • , Yuanyuan Hou
  • , Morgan Fleishman
  • , Olivia Mosto
  • , Alyssa Weninger
  • , Guoping Feng
  • Massachusetts Institute of Technology
  • The Broad Institute of MIT and Harvard

Research output: Contribution to journalArticlepeer-review

35 Scopus citations

Abstract

Alterations in the structure and functional connectivity of anterior thalamic nuclei (ATN) have been linked to reduced cognition during aging. However, ATN circuits that contribute to higher cognitive functions remain understudied. We found that the anteroventral (AV) subdivision of ATN is necessary specifically during the maintenance phase of a spatial working memory task. This function engages the AVfiparasubiculum (PaS)fientorhinal cortex (EC) circuit. Aged mice showed a deficit in spatial working memory, which was associated with a decrease in the excitability of AV neurons. Activation of AV neurons or the AVfiPaS circuit in aged mice was sufficient to rescue their working memory performance. Furthermore, rescued aged mice showed improved behavior-induced neuronal activity in prefrontal cortex (PFC), a critical site for working memory processes. Although the direct activation of PFC neurons in aged mice also rescued their working memory performance, we found that these animals exhibited increased levels of anxiety, which was not the case for AVfiPaS circuit manipulations in aged mice. These results suggest that targeting AV thalamus in aging may not only be beneficial for cognitive functions but that this approach may have fewer unintended effects compared to direct PFC manipulations.

Original languageEnglish
Article numbere2118712119
JournalProceedings of the National Academy of Sciences of the United States of America
Volume119
Issue number20
DOIs
StatePublished - May 17 2022

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