Spatial memory consolidation during REM sleep requires stabilization of newly formed place cells.
Boyce, R.; Yong, H. C.; Carmichael, J. E.; Brandon, M.; Williams, S.
Show abstract
The involvement of rapid-eye-movement sleep (REMs) in spatial memory formation was recently demonstrated, although how neural activity during REMs influences newly-formed place field stability remains unclear. Here, we combined large-scale single-unit recordings of mouse hippocampal CA1 with an established optogenetic approach enabling REMs-selective inhibition of medial septum GABAergic neurons (MSGABA), resulting in spatial memory deficits when applied post-learning. Although individual neural activity was unaffected by REMs-selective MSGABA inhibition during a post-learning rest session, both the synchrony of population-level activity bursts observed during REMs occurring in the rest session and place field stability measured during subsequent memory recall testing were reduced vs controls. However, the latter effect was limited to place cells participating in population activity during REMs, as stability of non-participant place cells was relatively weak and indifferent between groups. This suggests that synchronous CA1 population activity during REMs stabilizes spatial representations in a plastic subpopulation of participating CA1 neurons.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Inhibitory parvalbumin basket cell activity is selectively reduced during hippocampal sharp wave ripples in a mouse model of familial Alzheimer's disease 95%
- A pathogenic missense mutation in kainate receptors elevates dendritic excitability and synaptic integration through dysregulation of SK channels 95%
- Inhibitory neurons marked by the connectivity molecule Kirrel3 regulate memory precision 95%
Similar papers in this journal
- Ketamine evoked disruption of entorhinal and hippocampal spatial maps 96%
- Optogenetic frequency scrambling of hippocampal theta oscillations dissociates working memory retrieval from hippocampal spatiotemporal codes 96%
- Disruption of the grid cell network in a mouse model of early Alzheimer's disease 96%
Similar papers in this journal
- Impaired spatial learning and suppression of sharp wave ripples by cholinergic activation at the goal location 96%
- Impaired speed encoding is associated with reduced grid cell periodicity in a mouse model of tauopathy 96%
- Inhibition is a prevalent mode of activity in the neocortex around awake hippocampal ripples 95%
Similar papers in this journal
Similar papers in this journal
- Distinct changes to hippocampal and medial entorhinal circuits emerge across the progression of cognitive deficits in epilepsy 96%
- The ventral CA2 region of the hippocampus and its differential contributions to social memory and social aggression 95%
- Sharp-wave ripple associated activity in the medial prefrontal cortex supports spatial rule switching 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.