Regional specialization of movement encoding across the primate sensorimotor cortex

S Simon Borgognon N Nicolò Macellari A Alexandra M. Hickey M Matthew G. Perich H Houman Javaheri R Rafael Ornelas-Kobayashi M Maude Delacombaz C Christopher Hitz F Florian Fallegger S Stéphanie P. Lacour E Erwan Bezard E Eric M. Rouiller J Jocelyne Bloch T Tomislav Milekovic I Ismael Seáñez G Gregoire Courtine

Abstract

Abstract The process by which the cerebral cortex generates movements to achieve different tasks remains poorly understood. Here, we leveraged the rich repertoire of well-controlled primate locomotor behaviors to study how task-specific movements are encoded across the dorsal premotor cortex (PMd), primary motor cortex (M1), and primary somatosensory cortex (S1) under naturalistic conditions. Neural population activity was confined within low-dimensional manifolds and partitioned into task-dependent and task-independent subspaces. However, the prevalence of these subspaces differed between cortical regions. PMd primarily operated within its task-dependent subspace, while S1, and to a lesser extent M1, largely evolved within their task-independent subspaces. The temporal structure of movement was encoded in the task-independent subspaces, which also dominated the PMd-to-M1 communication as the movement plans were translated into motor commands. Our results suggest that the brain utilizes different cortical regions to serialize the motor control by first performing task-specific computations in PMd to then generate task-independent commands in M1.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 01, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (16)

S

Simon Borgognon

N

Nicolò Macellari

A

Alexandra M. Hickey

M

Matthew G. Perich

H

Houman Javaheri

R

Rafael Ornelas-Kobayashi

M

Maude Delacombaz

C

Christopher Hitz

F

Florian Fallegger

S

Stéphanie P. Lacour

E

Erwan Bezard

E

Eric M. Rouiller

J

Jocelyne Bloch

T

Tomislav Milekovic

I

Ismael Seáñez

G

Gregoire Courtine