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Alpha Oscillations Track the Projection of Reactivated Memories into Conscious Awareness.

Benjamin J Griffiths

The Journal of neuroscience : the official journal of the Society for Neuroscience April 15, 2026 DOI: 10.1523/jneurosci.1487-25.2026 (opens in new tab) via PubMed

Summary

AI-generated from the abstract

Episodic memory is conscious by definition, but it is unclear whether memory reactivation alone guarantees overt recall. Magnetoencephalography recordings from 31 participants completing a video-word paired-associates memory task showed that sensory cortical reactivation could occur without overt recall. Overt recall was predicted by an increase in reactivated representations fluctuating within the alpha band and a decrease in total sensory neocortical alpha power. These findings suggest that representational reactivation does not ensure recall and that alpha oscillations help project internally generated representations into conscious awareness.

Study at a glance

Characteristics Observational cohort Peer reviewed
Sample size 31
Population 18 females, 13 males completing a video-word paired-associates memory task
Keywords Meg Mvpa Alpha oscillations Consciousness Episodic memory
Key finding Sensory cortical reactivation can occur without overt recall; overt recall is predicted by increased reactivated representations in the alpha band and decreased total sensory neocortical alpha power.

Abstract

By definition, episodic memory is a conscious phenomenon. Memory traces reactivated by the hippocampus and reinstated in the sensory cortices need to enter conscious awareness for them to be re-experienced and overtly recalled. However, it remains unclear whether such reactivation in-and-of-itself ensures that memories will be overtly recalled. To investigate this, magnetoencephalography recordings were analyzed from 31 participants (18 females, 13 males) completing a video-word paired-associates memory task. When combining linear classifiers and spectral analyses, sensory cortical reactivation could be observed without overt recall occurring, suggesting reactivation does not guarantee overt recall. Instead, overt recall was additively predicted by (1) an increase in reactivated representations rhythmically fluctuating within the alpha band and (2) a decrease in total sensory neocortical alpha power. These results are consistent with accounts which propose that reactivation benefits from desynchronizing the network to provide representational space for stimulus-specific information and/or amplifying stimulus-specific information above residual noise. Altogether, these results suggest that representational reactivation can occur without overt recall and suggest a role for alpha oscillations in projecting internally generated representations into conscious awareness.

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