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Updated: May 12, 2026

In Vivo Wireless Optogenetic Control of Skilled Motor Behavior
Published on: November 22, 2021
Nucleo-olivary inhibition balances the interaction between the reactive and adaptive layers in motor control
Ivan Herreros1, Paul F M J Verschure
1Laboratory of Synthetic Perceptive Emotive and Cognitive Systems (SPECS), Centre of Autonomous Systems and Neuro-Robotics (N-RAS), Department of Technology, Universitat Pompeu Fabra (UPF), Barcelona 08018, Spain.
Abstract:
In the acquisition of adaptive motor reflexes to aversive stimuli, the cerebellar output fulfills a double purpose: it controls a motor response and it relays a sensory prediction. However, the question of how these two apparently incompatible goals might be achieved by the same cerebellar area remains open. Here we propose a solution where the inhibition of the Inferior Olive (IO) by the cerebellar Deep Nuclei (DN) translates the motor command signal into a sensory prediction allowing a single cerebellar area to simultaneously tackle both aspects of the problem: execution and prediction. We demonstrate that having a graded error signal, the gain of the Nucleo-Olivary Inhibition (NOI) balances the generation of the response between the cerebellar and the reflexive controllers or, in other words, between the adaptive and the reactive layers of behavior. Moreover, we show that the resulting system is fully autonomous and can either acquire or erase adaptive responses according to their utility.
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