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Updated: Jul 9, 2025

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Optogenetic Entrainment of Hippocampal Theta Oscillations in Behaving Mice
Published on: June 29, 2018
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Hippocampal Engrams Generate Variable Behavioral Responses and Brain-Wide Network States.
Kaitlyn E Dorst1,2, Ryan A Senne1,2, Anh H Diep1
1Department of Psychological and Brain Sciences, Boston University, Boston 02215, Massachusetts.
Summary
Fear memory reactivation in the hippocampus influences freezing behavior, with context size critically impacting this defensive response. Brain-wide network analysis reveals shared characteristics between engram reactivation and natural memory retrieval.
Area of Science:
- Neuroscience
- Behavioral Neuroscience
- Systems Neuroscience
Background:
- Freezing is a key defensive behavior studied during hippocampal-dependent fear memory reactivation.
- The precise neural circuits and brain-wide modulations underlying context-dependent freezing remain largely unknown.
Purpose of the Study:
- To investigate how optogenetically reactivated hippocampal fear engrams modulate freezing behavior across different environmental contexts.
- To identify brain-wide network alterations associated with fear engram reactivation and compare them to natural fear memory retrieval.
Main Methods:
- Optogenetic reactivation of a fear engram in the dentate gyrus of male mice across three contexts of varying sizes.
- Graph theoretical analyses of cFos expression to map brain-wide network changes during engram reactivation.
- Comparison of reactivation-induced networks with networks from natural fear memory retrieval.
Main Results:
- Light-induced freezing was context-dependent, being robust in small contexts but absent in large ones.
- Engram reactivation induced positive interregional cFos correlations, forming networks with "fear" and "defense" system hubs.
- Networks from small-context engram reactivation shared modularity and hub characteristics with natural fear memory retrieval networks.
Conclusions:
- Hippocampal fear engram reactivation's influence on freezing is modulated by environmental context size.
- Brain-wide network analysis reveals conserved systems-level mechanisms between artificial engram reactivation and natural memory recall.
- Understanding these circuits offers insights into how memory modulates behavioral states.

