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Séminaire Juan Mena-Segovia "Midbrain circuits mediating behavioral inhibition"

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Détails de l'évènement

Juan Mena-Segovia

Assistant Professor, Center for Molecular and Behavioral Neuroscience,

Aidekman Research Center, Rutgers University

 

"Midbrain circuits mediating behavioral inhibition"

 

Résumé

Cholinergic neurons of the midbrain, located in the pedunculopontine (PPN) and laterodorsal tegmental nuclei, are interconnected with all the basal ganglia structures, as well as with motor centers in the brainstem and medulla. Recent theories put into question whether PPN cholinergic neurons form part of a locomotor region that directly regulates the motor output, and rather suggest a modulatory role in adaptive behavior involving both motor and cognitive functions. In support of this, experimental studies in animals suggest that cholinergic neurons reinforce actions by signaling reward prediction and shape adaptations in behavior during changes in environmental contingencies. This is further supported by clinical studies proposing that decreased cholinergic transmission originated in the PPN is associated with impaired sensorimotor integration and perseverant behavior, giving rise to some of the symptoms observed in Parkinson’s disease and progressive supranuclear palsy. Along with cholinergic neurons, GABAergic and glutamatergic neurons constitute the other two large neuronal populations of the PPN, but little is known about their contribution to basal ganglia function. Despite the difference in connectivity and neurochemical composition of all three populations, our recent functional studies suggest that all neurons have a converging function associated with the inhibition of behavior. In my talk, I will present our recent findings based on anatomical and functional studies obtained from the dissection of these midbrain circuits and will propose a unified theory that explains their contribution to behavior. 

Invitant : Nicolas Mallet, PhD, Institute of Neurodegenerative diseases, University of Bordeaux · CNRS UMR 5293

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  • Nom : MEYNARD Sonia