| Literature DB >> 32687054 |
Víctor J López-Madrona1, Elena Pérez-Montoyo1, Efrén Álvarez-Salvado1, David Moratal2, Oscar Herreras3, Ernesto Pereda4,5, Claudio R Mirasso6, Santiago Canals1.
Abstract
Hippocampal firing is organized in theta sequences controlled by internal memory processes and by external sensory cues, but how these computations are coordinated is not fully understood. Although theta activity is commonly studied as a unique coherent oscillation, it is the result of complex interactions between different rhythm generators. Here, by separating hippocampal theta activity in three different current generators, we found epochs with variable theta frequency and phase coupling, suggesting flexible interactions between theta generators. We found that epochs of highly synchronized theta rhythmicity preferentially occurred during behavioral tasks requiring coordination between internal memory representations and incoming sensory information. In addition, we found that gamma oscillations were associated with specific theta generators and the strength of theta-gamma coupling predicted the synchronization between theta generators. We propose a mechanism for segregating or integrating hippocampal computations based on the flexible coordination of different theta frameworks to accommodate the cognitive needs.Entities:
Keywords: cross-frequency coupling; gamma; hippocampus; information transmission; learning; neuroscience; rat; theta
Mesh:
Year: 2020 PMID: 32687054 PMCID: PMC7413668 DOI: 10.7554/eLife.57313
Source DB: PubMed Journal: Elife ISSN: 2050-084X Impact factor: 8.140