Manipulating Hippocampal Place Cell Activity by Single-Cell Stimulation in Freely Moving Mice.

Abstract:

:Learning critically depends on the ability to rapidly form and store non-overlapping representations of the external world. In line with their postulated role in episodic memory, hippocampal place cells can undergo a rapid reorganization of their firing fields upon contextual manipulations. To explore the mechanisms underlying such global remapping, we juxtacellularly stimulated 42 hippocampal neurons in freely moving mice during spatial exploration. We found that evoking spike trains in silent neurons was sufficient for creating place fields, while in place cells, juxtacellular stimulation induced a rapid remapping of their place fields to the stimulus location. The occurrence of complex spikes was most predictive of place field plasticity. Our data thus indicate that plasticity-inducing stimuli are able to rapidly bias place cell activity, simultaneously suppressing existing place fields. We propose that such competitive place field dynamics could support the orthogonalization of the hippocampal map during global remapping.

journal_name

Cell Rep

journal_title

Cell reports

authors

Diamantaki M,Coletta S,Nasr K,Zeraati R,Laturnus S,Berens P,Preston-Ferrer P,Burgalossi A

doi

10.1016/j.celrep.2018.03.031

subject

Has Abstract

pub_date

2018-04-03 00:00:00

pages

32-38

issue

1

issn

2211-1247

pii

S2211-1247(18)30373-5

journal_volume

23

pub_type

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