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Novel off-context experience constrains hippocampal representational drift.

Gal Elyasaf1, Alon Rubin1, Yaniv Ziv1

  • 1Department of Brain Sciences, Weizmann Institute of Science, 76100 Rehovot, Israel.

Current Biology : CB
|November 20, 2024
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New experiences in novel environments surprisingly reduce representational drift in the hippocampus. This finding challenges the idea that learning new information destabilizes existing memory representations.

Keywords:
calcium imaginghippocampusmemorynoveltyplace cellsrepresentational drift

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Area of Science:

  • Neuroscience
  • Cognitive Science
  • Memory Research

Background:

  • The hippocampus creates distinct neural representations for experiences, crucial for memory formation.
  • Hippocampal representations naturally change over time in familiar environments, a phenomenon known as representational drift.
  • This drift is also observed in other brain regions, including visual, auditory, and olfactory cortices.

Purpose of the Study:

  • To investigate the mechanisms underlying representational drift in the hippocampus.
  • To test the hypothesis that ongoing learning processes, particularly from novel experiences, drive representational drift.
  • To examine how off-context learning experiences influence the stability of existing hippocampal representations.

Main Methods:

  • Longitudinal recording of hippocampal neurons in mice over several weeks.
  • Repeated exposure of mice to a familiar linear track environment.
  • Introduction of novel environmental experiences for one hour after each familiar track session.

Main Results:

  • Contrary to the prevailing hypothesis, novel off-context experiences significantly decreased representational drift in the hippocampus.
  • Place cell representations showed reduced drift following exposure to new, unrelated environments.
  • Findings suggest a constrained model where distinct memory representations occupy separate neural activity spaces.

Conclusions:

  • The learning of novel information does not necessarily destabilize existing hippocampal memory representations.
  • Representational drift appears to be regulated by the spatial arrangement of distinct memory traces within the neural activity space.
  • Distinct memory representations may mutually constrain each other's drift, promoting stability rather than interference.