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This research explores how specific neurons in the medial entorhinal cortex influence spatial cognition and memory. By using advanced techniques, it aims to uncover the role of inhibitory neurons in processing spatial information.
Cognition and memory result from communication between specific populations of neurons in our brains.
In the medial entorhinal cortex (MEC), representations of location that are crucial for spatial cognition and memory are generated by neurons called grid cells.
The rate at which these neurons fire action potentials can be decoded into fields that form a hexagonal grid spanning the environment.
In addition to the action potential rate, the information about spatial location is also encoded by t…
THE UNIVERSITY OF EDINBURGH
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