Non-invasive Stimulation of Contralateral Primary Motor Cortex Reduces the Amount of Skill Generalization to the Untrained Arm
Jul 22, 2025·,
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1 min read
Goldy YADAV
Manon CHAUVAUX
Julie DUQUE
Abstract
Research study on non-invasive stimulation of contralateral primary motor cortex reduces the amount of skill generalization to the untrained arm
Type
Publication
BioRxiv
type: publication
Authors
Post-Doctoral Researcher
Goldy completed her PhD (2015-2020) in Cognitive Science at the Indian Institute of Technology, Gandhinagar (with Prof. Pratik Mutha), where she investigated the underlying mechanisms mediating learning, retention and generalization of newly learned skilled movements, and the interactions between spatial working memory and motor skill memory. She was a Fulbright-Nehru visiting doctoral fellow at the National Institutes of Health (with Dr. Leonardo Cohen) where she developed projects exploring the role of sensorimotor neural oscillatory activity on motor output. After this period, she began as a post-doctoral researcher at the CoActions Lab, where she was investigating the role of neural oscillations in motor learning and adaptation.
Authors
Master Student
Manon was a master’s student at the université catholique de Louvain in neuroscience option. She joined the CoActions lab for her master thesis in early 2023. Her Master’s thesis project aimed at investigating the underlying neural basis of interlimb transfer of a newly learned skilled movement in young healthy subjects. This project involved behavioral testing, electroencephalography (EEG) recording and transcranial magnetic stimulation (TMS).

Authors
Full Professor, Head of the CoActions Lab
Research broadly explores a range of questions pertaining to the cognitive neuroscience of human behavior. Conduct experiments to explore the interaction between cognition and action in neurologically healthy and impaired individuals. Use a variety of techniques to characterize the functional role of different parts of the motor pathways, including transcranial magnetic stimulation (TMS), functional and structural magnetic resonance imaging (MRI), and electroencephalography (EEG). Recent research investigates the role of the locus coeruleus in various aspects of action control, including reaching movement control, decision making, and behavioral vigor, using transcutaneous vagus nerve stimulation (tVNS) to causally probe this neuromodulatory system. More →