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A Method for High Fidelity Optogenetic Control of Individual Pyramidal Neurons In vivo
Published on: September 2, 2013
Precise control of movement kinematics by optogenetic inhibition of Purkinje cell activity
Shane A Heiney1, Jinsook Kim, George J Augustine
1Psychology Department, University of Pennsylvania, Philadelphia, Pennsylvania 19104, Lee Kong Chian School of Medicine, Nanyang Technological University, Singapore 637553, Singapore, Center for Functional Connectomics, Korea Institute of Science and Technology, Seoul, 136-791 Republic of Korea, and Institute of Molecular and Cell Biology, Singapore 138673, Singapore.
Abstract:
Purkinje cells (PCs) of the cerebellar cortex are necessary for controlling movement with precision, but a mechanistic explanation of how the activity of these inhibitory neurons regulates motor output is still lacking. We used an optogenetic approach in awake mice to show for the first time that transiently suppressing spontaneous activity in a population of PCs is sufficient to cause discrete movements that can be systematically modulated in size, speed, and timing depending on how much and how long PC firing is suppressed. We further demonstrate that this fine control of movement kinematics is mediated by a graded disinhibition of target neurons in the deep cerebellar nuclei. Our results prove a long-standing model of cerebellar function and provide the first demonstration that suppression of inhibitory signals can act as a powerful mechanism for the precise control of behavior.

