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Suttrup, J.

Publications and source records attributed to Suttrup, J..

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Action perception recruits the cerebellum and is impaired in spinocerebellar ataxia patients

Our cerebellum has been proposed to generate prediction signals that may help us plan and execute our motor programs. However, to what extent our cerebellum is also actively involved in perceiving the action of others remains to be elucidated. Using fMRI, we show here that observing goal-directed hand actions of others bilaterally recruits cerebellar Lobules VI, VIIb and VIIIa. Moreover, whereas healthy subjects (n=31) were found to be able to discriminate subtle differences in the kinematics of observed limb movements of others, patients suffering from spinocerebellar ataxia type 6 (SCA6; n=21) were severely impaired in performing such tasks. Our data suggest that the human cerebellum is actively involved in perceiving the kinematics of the hand actions of others and that SCA6 patients deficits include a difficulty in perceiving the actions of other individuals. This finding alerts us to the fact that cerebellar disorders can alter social cognition. Given that impairments in social cognition have been reported to be one of the most debilitating consequences of neurological disorders, this finding may be relevant to improving the quality of life of patients and their families.

neuroscience

Perceiving Hesitation requires both the Motor and Mentalizing systems

The mentalizing network and the putative mirror neuron system (pMNS) are two important large scale brain networks for social cognition, with very little overlap between them. Evidence suggests however that the two networks can collaborate for understanding the state of mind of others on the basis of their body movements. Here using fMRI we find that when participants view hand actions to detect hesitations they activate both their mentalizing and pMNS networks and information is exchanged across these networks. In a follow-up experiment using repetitive TMS we find that disturbing activity in either network slows hesitation attribution. In contrast, watching the same actions to determine the size of the object being grasped only triggered activity in the pMNS network, and rTMS over the mentalizing network then no longer slowed reactions. When we see others actions, we recruit our own motor system. Our results suggest that for detecting a simple mental state like hesitation, this pre-processed motor information becomes a necessary input into a mentalizing network that is essential for associating deviations from a predicted motor program with a specific mental state.

neuroscience