Concurrent presentation of memory-related odors and sounds nullified sleep reactivation benefits
Subramanian, G.; Zelano, C.; Paller, K. A.; Schechtman, E.
Show abstract
AbstractReactivation of recently acquired memories during sleep supports their longevity. Reactivation can be altered during sleep using odors or sounds through a technique termed targeted memory reactivation (TMR). Here, we attempted to selectively weaken memories by reactivating them together with forgetting instructions. We delivered sounds to reactivate spatial memories and concurrent odors to reactivate instructions. Participants learned about the instructions in a Directed-Forgetting task performed with a list of to-be-remembered and to-be-forgotten words. One odor was linked with instructions to forget, one with instructions to remember, and a third was not assigned any meaning. During a nap, sounds previously linked with object-location learning were simultaneously presented with these odors. Spatial recall was tested after sleep. Sound cues produced a selective recall benefit for weakly encoded memories. However, memory results did not support the prediction that forgetting could be instilled by the concurrent forget odor. An encoding-strength-dependent benefit was largest when sounds were presented together with the odor that lacked assigned meaning, whereas the other two odors both disrupted sound-induced memory reactivation. These two odors were linked with instructions and with multiple learning episodes in the Directed-Forgetting task. Accordingly, we infer that reactivation evoked by the remember and forget odor cues interfered with the reactivation of spatial memories. Odors also induced a prolonged decline in sigma EEG power (12-16 Hz) that continued at least 10 s after odor offset. Overall, these findings highlight the complexity of memory consolidation during sleep when multiple memories and multiple cues are involved.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
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 96%
- First-night effect reduces the beneficial effects of sleep on visual plasticity and modifies the underlying neurochemical processes 96%
"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.