Social Observation Enhances Cross-environment Activation of Hippocampal Place Cell Patterns
Affiliations
Humans and animals frequently learn through observing or interacting with others. The local enhancement theory proposes that presence of social subjects in an environment facilitates other subjects' understanding of the environment. To explore the neural basis of this theory, we examined hippocampal place cells, which represent spatial information, in rats as they stayed in a small box while a demonstrator rat running on a separate, nearby linear track, and as they ran on the same track themselves. We found that place cell firing sequences during self-running on the track also appeared in the box. This cross-environment activation occurred even prior to any self-running experience on the track and was absent without a demonstrator. Our data thus suggest that social observation can facilitate the observer's spatial representation of an environment without actual self-exploration. This finding may contribute to neural mechanisms of local enhancement.
Yuan M Cartogr Geogr Inf Sci. 2024; 51(5):687-701.
PMID: 39429547 PMC: 11486309. DOI: 10.1080/15230406.2023.2264758.
Ross T, Poulter S, Lever C, Easton A Sci Rep. 2024; 14(1):16159.
PMID: 38997341 PMC: 11245605. DOI: 10.1038/s41598-024-66403-4.
Mou X, Ji D bioRxiv. 2024; .
PMID: 38617364 PMC: 11014478. DOI: 10.1101/2024.03.31.587484.
Effects of social context manipulation on dorsal and ventral hippocampal neuronal responses.
Wu W, Yiu E, Ophir A, Smith D Hippocampus. 2023; 33(7):830-843.
PMID: 36789678 PMC: 11127721. DOI: 10.1002/hipo.23507.
Observational learning promotes hippocampal remote awake replay toward future reward locations.
Mou X, Pokhrel A, Suresh P, Ji D Neuron. 2021; 110(5):891-902.e7.
PMID: 34965381 PMC: 8897267. DOI: 10.1016/j.neuron.2021.12.005.