Replay of procedural experience is independent of the hippocampus
Thompson, E.; Rollik, L.; Waked, B.; Mills, G.; Kaur, J.; Geva, B.; Carrasco-Davis, R.; George, T.; Domine, C.; Dorrell, W.; Stephenson-Jones, M.
Show abstract
Sleep is critical for consolidating all forms of memory1-3, from episodic experience to the development of motor skills4-6. A core feature of the consolidation process is offline replay of neuronal firing patterns that occur during experience7,8. This replay is thought to originate in the hippocampus and trigger the reactivation of ensembles of cortical and subcortical neurons1,3,9-18. However, non-declarative memories do not require the hippocampus for learning or for sleep-dependent consolidation19-26 meaning what drives their consolidation is unknown. Here we show, using an unsupervised method, that replay occurs in the dorsal striatum of mice during offline consolidation of a non-declarative, procedural, memory and that this replay is generated independently of the hippocampus. Replay occurred at both real-world and time-compressed speeds and was also prioritised both at the level of the individual neurons and the type of neural sequence. Complete bilateral lesions of the hippocampus had no effect on any feature of this replay. Our results demonstrate that procedural replay during consolidation of a non-declarative memory is independent of the hippocampus. These results support the view that replay drives active consolidation of all types of memory during sleep but challenges the idea that the hippocampus is the source of this replay.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Transient developmental increase of prefrontal activity alters network maturation and causes cognitive dysfunction in adult mice 98%
- Dynamic causal communication channels between neocortical areas 97%
- Heightened lateral habenula activity during stress produces brainwide and behavioral substrates of susceptibility 97%
Similar papers in this journal
- Response outcome gates the effect of spontaneous cortical state fluctuations on perceptual decisions 98%
- Mixed representations of choice direction and outcome by GABA/glutamate cotransmitting neurons in the entopeduncular nucleus 97%
- ThermoMaze: A behavioral paradigm for readout of immobility-related brain events 97%
"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.