Co-allocation to overlapping dendritic branches in the retrosplenial cortex integrates contextual memories across time
Sehgal, M.; Almeida-Filho, D.; Martin, S.; Mejia, I. D.; Kastellakis, G.; Kim, S.; Lee, J.; Pekcan, A.; Huang, S.; Lavi, A.; Heo, W. D.; Poirazi, P.; Trachtenberg, J. T.; Silva, A. J.
Show abstract
Events occurring close in time are often linked in memory, providing an episodic timeline and a framework for those memories. Recent studies suggest that memories acquired close in time are encoded by overlapping neuronal ensembles, but the role of dendritic plasticity mechanisms in linking memories is unknown. Using activity-dependent labeling and manipulation approaches, longitudinal one- and two-photon imaging of somatic and dendritic compartments, and computational modeling, we show that memory linking is not only dependent on ensemble overlap in the retrosplenial cortex, but also on branch-specific dendritic allocation mechanisms. The same dendritic segments are preferentially activated by two linked memories, and spine clusters added after each of the two linked memories are allocated to the same dendritic segments. Our results demonstrate a causal mechanistic role for dendritic plasticity in memory integration and reveal a novel set of rules that govern how linked and independent memories are allocated to dendritic compartments.
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