Abstract Reinforcement feedback can improve motor learning, but the underlying brain mechanisms remain underexplored. In particular, the causal contribution of specific patterns of oscillatory activity within the human striatum is unknown. To address this question, we exploited a recently developed non-invasive deep brain stimulation technique called transcranial temporal interference stimulation (tTIS) during reinforcement motor learning with concurrent neuroimaging, in a randomized, sham-controlled, double-blind study. Striatal tTIS applied at 80 Hz, but not at 20 Hz, abolished the benefits of reinforcement on motor learning. This effect was related to a selective modulation of neural activity within the striatum. Moreover, 80 Hz, but not 20 Hz, tTIS increased the neuromodulatory influence of the striatum on frontal areas involved in reinforcement motor learning. These results show that tTIS can non-invasively and selectively modulate a striatal mechanism involved in reinforcement learning, expanding our tools for the study of causal relationships between deep brain structures and human behaviour.
Publication scientifique
Non-invasive stimulation of the human striatum disrupts reinforcement learning of motor skills
Autres publications de la plateforme
Causal disconnectomics of motion perception networks: insights from transcranial magnetic stimulation‐induced...
Raffin, Estelle; Salamanca‐Giron, Roberto F.; Huxlin, Krystel R.; Reynaud, Olivier; Mattera, Loan; Martuzzi, Roberto; Hummel, Friedhelm C.
The Journal of Physiology
Boosting hemianopia recovery: the power of interareal cross-frequency brain stimulation
Raffin, Estelle; Bevilacqua, Michele; Windel, Fabienne; Menoud, Pauline; Salamanca-Giron, Roberto F; Feroldi, Sarah; Zandvliet, Sarah B; Ramdass, Nicola; Draaisma, Laurijn; Vuilleumier, Patrik; Guggisberg, Adrian G; Bonvin, Christophe; Fleury, Lisa; Huxlin, Krystel R; Beanato, Elena; Hummel, Friedhelm C
Brain
Return of the GEDAI: Unsupervised EEG Denoising based on Leadfield Filtering
Ros, Tomas; Férat, Victor; Huang, Yingqi; Colangelo, Cristina; Kia, Seyed Mostafa; Wolfers, Thomas; Vulliemoz, Serge; Michela, Abele
Multivariate deep phenotyping reveals behavioral correlates of non-restorative sleep in 22q11.2...
Reich, Natacha; Imparato, Andrea; Cataldi, Jacinthe; Thillainathan, Niveettha; Delavari, Farnaz; Schneider, Maude; Eliez, Stephan; Siclari, Francesca; Sandini, Corrado
Psychiatry Research
EEG microstate D as psychosis-specific correlate in adolescents and young adults...
Liebrand, Matthias; Katsarakis, Angelos; Josi, Johannes; Diezig, Sarah; Michel, Chantal; Schultze-Lutter, Frauke; Rochas, Vincent; Mancini, Valentina; Kaess, Michael; Hubl, Daniela; Koenig, Thomas; Kindler, Jochen
Schizophrenia Research
EEG correlates of egocentric and altercentric biases in forensic cases with...
Rochas, Vincent; Montandon, Marie-Louise; Rodriguez, Cristelle; Herrmann, François R.; Eytan, Ariel; Pegna, Alan J.; Michel, Christoph M.; Giannakopoulos, Panteleimon
Frontiers in Neuroscience
Journal de publication
Nature Human Behaviour
Auteurs:
Vassiliadis, Pierre; Beanato, Elena; Popa, Traian; Windel, Fabienne; Morishita, Takuya; Neufeld, Esra; Duque, Julie; Derosiere, Gerard; Wessel, Maximilian J.; Hummel, Friedhelm C.
Date de publication:
Plateforme:
Études récentes de la plateforme

La connaissance comme récompense
Comparaison de différents types de récompenses
Les participants prennent part à une tâche comprenant trois types de récompenses, de valeur élevée ou faible :
-...

Réseaux cérébraux de la mémoire dans l’épilepsie
Cartographie multimodale des réseaux cérébraux
Combinaison de l'EEG, de l'IRM à champ ultra-élevé et de modèles animaux
Ce projet vise à identifier les marqueurs...

Réduire les récidives d’hématomes sous-duraux chroniques
La MMA est-elle vraiment responsable ?
Si de nouvelles données confirment le rôle de la MMA dans le saignement, l'efficacité de l'embolisation de la...







