Inter- and intra-animal variation in the integrative properties of stellate cells in the medial entorhinal cortex

Hugh Pastoll, Derek L Garden, Ioannis Papastathopoulos, Gülşen Sürmeli, Matthew F Nolan

Research output: Contribution to journalArticlepeer-review

10 Citations (Scopus)

Abstract

Distinctions between cell types underpin organisational principles for nervous system function. Functional variation also exists between neurons of the same type. This is exemplified by correspondence between grid cell spatial scales and synaptic integrative properties of stellate cells (SCs) in the medial entorhinal cortex. However, we know little about how functional variability is structured either within or between individuals. Using ex-vivo patch-clamp recordings from up to 55 SCs per mouse, we find that integrative properties vary between mice and, in contrast to modularity of grid cell spatial scales, have a continuous dorsoventral organisation. Our results constrain mechanisms for modular grid firing and provide evidence for inter-animal phenotypic variability among neurons of the same type. We suggest that neuron type properties are tuned to circuit level set points that vary within and between animals.

Original languageEnglish
Article numbere52258
Number of pages25
JournaleLife
Volume9
DOIs
Publication statusPublished - 10 Feb 2020

Keywords

  • DORSAL
  • FREQUENCY
  • GRID CELLS
  • HCN1 CHANNELS
  • LAYER-II
  • MODEL
  • NEURONS
  • ORGANIZATION
  • OSCILLATIONS
  • THETA

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