Real-time cortical dynamics during motor inhibition

Rocchi, Lorenzo
Last
Writing - Review & Editing
;
2024-01-01

Abstract

The inhibition of action is a fundamental executive mechanism of human behaviour that involve a complex neural network. In spite of the progresses made so far, many questions regarding the brain dynamics occurring during action inhibition are still unsolved. Here, we used a novel approach optimized to investigate real-time effective brain dynamics, which combines transcranial magnetic stimulation (TMS) with simultaneous electroencephalographic (EEG) recordings. 22 healthy volunteers performed a motor Go/NoGo task during TMS of the hand-hotspot of the primary motor cortex (M1) and whole-scalp EEG recordings. We reconstructed source-based real-time spatiotemporal dynamics of cortical activity and cortico-cortical connectivity throughout the task. Our results showed a task-dependent bi-directional change in theta/gamma supplementary motor cortex (SMA) and M1 connectivity that, when participants were instructed to inhibit their response, resulted in an increase of a specific TMS-evoked EEG potential (N100), likely due to a GABA-mediated inhibition. Interestingly, these changes were linearly related to reaction times, when participants were asked to produce a motor response. In addition, TMS perturbation revealed a task-dependent long-lasting modulation of SMA-M1 natural frequencies, i.e. alpha/beta activity. Some of these results are shared by animal models and shed new light on the physiological mechanisms of motor inhibition in humans.
2024
2024
Inglese
14
1
7871
Esperti anonimi
internazionale
scientifica
Goal 3: Good health and well-being
Casula, Elias Paolo; Pezzopane, Valentina; Roncaioli, Andrea; Battaglini, Luca; Rumiati, Raffaella; Rothwell, John; Rocchi, Lorenzo; Koch, Giacomo ...espandi
1.1 Articolo in rivista
info:eu-repo/semantics/article
1 Contributo su Rivista::1.1 Articolo in rivista
262
8
open
Files in This Item:
File Size Format  
2024 - Casula - Real-time cortical dynamics during motor inhibition.pdf

open access

Type: versione editoriale
Size 5.2 MB
Format Adobe PDF
5.2 MB Adobe PDF View/Open

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

Questionnaire and social

Share on:
Impostazioni cookie