Optogenetic Mapping of Rhythmic Phase-Dependent Excitability in the Mouse Striatum

M Manish Mohapatra J James Eric Carmichael K Kyle S. Smith M Matthijs A. A. van der Meer

Abstract

The striatum is thought to switch flexibly between multiple converging inputs to support adaptive behavior. The “communication through coherence” (CTC) hypothesis is a potential mechanism to implement such a flexible switching. For CTC to work in the striatum, striatal excitability must show rhythmic fluctuations, such as those related to the phase of the striatal local field potential (LFP). To test this fundamental requirement, we delivered a constant input stimulus to ChR2-expressing striatal fast-spiking PV+ interneurons (FSIs) in head-fixed awake mice (PV-Cre:Ai-32, n  = 18, 9 female) and determined whether the response to this stimulus varied with LFP phase. We found that approximately one-third (41.2%) of FSIs exhibited significant phase-dependent excitability in at least one LFP frequency band. Phase-dependent excitability was most prominent in the delta (2–5 Hz) frequency band, both in terms of prevalence (23.5% of FSIs sampled) and magnitude (phase modulation strength: 22% of average response). The most excitable phase tended to align with endogenous phase-locking, again most clearly in the delta band. These results bolster the functional relevance of the striatal field potential and spike-field relationships and provide proof-of-principle support for the possibility of CTC in the striatum.

Article Details

Volume / Issue Vol. 45, Issue 20
Published May 14, 2025
Pages e0218242025
ISSN 0270-6474
Publisher Society for Neuroscience

Journal Info

Journal of Neuroscience

Society for Neuroscience

ISSN: 0270-6474 Life Sciences

Authors (4)

M

Manish Mohapatra

J

James Eric Carmichael

K

Kyle S. Smith

M

Matthijs A. A. van der Meer