
pmid: 28494861
The distinctive firing pattern of grid cells in the medial entorhinal cortex (MEC) supports its role in the representation of space. It is widely believed that the hexagonal firing field of grid cells emerges from neural dynamics that depend on the local microcircuitry. However, local networks within the MEC are still not sufficiently characterized. Here, applying up to eight simultaneous whole-cell recordings in acute brain slices, we demonstrate the existence of unitary excitatory connections between principal neurons in the superficial layers of the MEC. In particular, we find prevalent feed-forward excitation from pyramidal neurons in layer III and layer II onto stellate cells in layer II, which might contribute to the generation or the inheritance of grid cell patterns.
Male, 570, QH301-705.5, 610, medial entorhinal cortex, RS, Pharmacy and materia medica, excitatory neuron, grid cell, Animals, Entorhinal Cortex, Biology (General), Rats, Wistar, info:eu-repo/classification/ddc/610, Pyramidal Cells: physiology, pyramidal cell, Pyramidal Cells, Excitatory Postsynaptic Potentials, Entorhinal Cortex: physiology, Rats, Entorhinal Cortex: cytology, connectivity, stellate cell, Female, neuronal network, Nerve Net, Function and Dysfunction of the Nervous System
Male, 570, QH301-705.5, 610, medial entorhinal cortex, RS, Pharmacy and materia medica, excitatory neuron, grid cell, Animals, Entorhinal Cortex, Biology (General), Rats, Wistar, info:eu-repo/classification/ddc/610, Pyramidal Cells: physiology, pyramidal cell, Pyramidal Cells, Excitatory Postsynaptic Potentials, Entorhinal Cortex: physiology, Rats, Entorhinal Cortex: cytology, connectivity, stellate cell, Female, neuronal network, Nerve Net, Function and Dysfunction of the Nervous System
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