A Comparison of Sleep-Based and Retrieval-Mediated Memory Consolidation Using Sigma-Band Activity
Caldwell, H. B.; Lushington, K.; Chatburn, A.
Show abstract
Sleep and retrieval training are reported to promote memory consolidation and are thought to have similar underlying brain-based mechanisms; however, these mechanisms have yet to be directly compared side-by-side, across equivalent timescales. The current study aimed to see if we could replicate sleep spindles enhancement of weakly encoded memories, across both sleep-based and retrieval-mediated memory consolidation, using EEG sigma power ([~]12-16 Hz) as a proxy for sleep spindles (i.e., sigma-band activity). Thirty subjects (27F, 18-34, M=22.17) participated in four separate sessions where they learnt different sets of 104 object-word pairs. Subjects were then tested on their recognition accuracy of the pairs before and after one of four 120-min memory interventions where EEG was recorded: retrieval training (i.e., cued recall practice), restudy (i.e., pair re-exposure), a nap opportunity, or a wakeful rest. Our results did not replicate an enhancement of weakly encoded memories, moderated by either sleep spindles or sigma power. Instead, posterior regions of sigma power negatively related to subsequent memory outcomes. We also detected a prioritisation to enhance memory outcomes for strongly encoded memories and greater memory outcomes following retrieval training and restudy compared to sleep and wake interventions. These results shed new light upon the role of sigma-band activity to predict subsequent memory outcomes and inform how future studies should measure encoding strength and sigma power. Importantly, our study provides a methodological approach to comparing sleep-based and retrieval-mediated memory consolidation that should be explored across different memory paradigms in future studies.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Individual differences in information processing during sleep and wake predict sleep-based memory consolidation of complex rules 98%
- Sleep Enhances Neural Representations of True and False Memories: An Event-Related Potential Study 97%
- Autonomic/Central Coupling Boosts Working Memory in Healthy Young Adults 97%
Similar papers in this journal
- Improving Memory via Automated Targeted Memory Reactivation during Sleep 97%
- The effect of sleep continuity disruption on multimodal emotion processing and regulation: a laboratory-based, randomized, controlled experiment in good sleepers 97%
- EEG markers of drowsiness do not predict lapses in attention during sleep deprivation 95%
Similar papers in this journal
- Splitting sleep between the night and a daytime nap reduces homeostatic sleep pressure and enhances long-term memory 97%
- High intensity exercise before sleep boosts memory encoding the next morning 97%
- First-night effect reduces the beneficial effects of sleep on visual plasticity and modifies the underlying neurochemical processes 94%
Similar papers in this journal
- Functional connectivity drifts during sleep as a marker of fluctuations in the level of consciousness 92%
- The Dream Catcher experiment: Blinded analyses disconfirm markers of dreaming consciousness in EEG spectral power 92%
- Rapid Eye Movement Sleep Displays Distinct Fractal Dynamics Between Phasic and Tonic States 91%
"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.