Dynamic structure of motor cortical neuron coactivity carries behaviorally relevant information

Author:

Sundiang Marina1ORCID,Hatsopoulos Nicholas G.123ORCID,MacLean Jason N.124

Affiliation:

1. Committee on Computational Neuroscience, University of Chicago, Chicago, IL, USA

2. University of Chicago Neuroscience Institute, Chicago, IL, USA

3. Department of Organismal Biology and Anatomy, University of Chicago, Chicago, IL, USA

4. Department of Neurobiology, University of Chicago, Chicago, IL, USA

Abstract

Abstract Skillful, voluntary movements are underpinned by computations performed by networks of interconnected neurons in the primary motor cortex (M1). Computations are reflected by patterns of coactivity between neurons. Using pairwise spike time statistics, coactivity can be summarized as a functional network (FN). Here, we show that the structure of FNs constructed from an instructed-delay reach task in nonhuman primates is behaviorally specific: Low-dimensional embedding and graph alignment scores show that FNs constructed from closer target reach directions are also closer in network space. Using short intervals across a trial, we constructed temporal FNs and found that temporal FNs traverse a low-dimensional subspace in a reach-specific trajectory. Alignment scores show that FNs become separable and correspondingly decodable shortly after the Instruction cue. Finally, we observe that reciprocal connections in FNs transiently decrease following the Instruction cue, consistent with the hypothesis that information external to the recorded population temporarily alters the structure of the network at this moment.

Funder

NIH NINDS

Publisher

MIT Press

Subject

Applied Mathematics,Artificial Intelligence,Computer Science Applications,General Neuroscience

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