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Optogenetic Modulation and Multi-Electrode Analysis of Cerebellar Networks In Vivo
Authors:Wolfgang Kruse  Martin Krause  Janna Aarse  Melanie D. Mark  Denise Manahan-Vaughan  Stefan Herlitze
Affiliation:1. Department of Zoology and Neurobiology, Faculty for Biology and Biotechnology, Ruhr University Bochum, Bochum, Germany.; 2. Department of Neurophysiology, Medical Faculty, Ruhr University Bochum, Bochum, Germany.; 3. International Graduate School of Neuroscience, Ruhr University Bochum, Bochum, Germany.; Tokyo Medical and Dental University, Japan,
Abstract:The firing patterns of cerebellar Purkinje cells (PCs), as the sole output of the cerebellar cortex, determine and tune motor behavior. PC firing is modulated by various inputs from different brain regions and by cell-types including granule cells (GCs), climbing fibers and inhibitory interneurons. To understand how signal integration in PCs occurs and how subtle changes in the modulation of PC firing lead to adjustment of motor behaviors, it is important to precisely record PC firing invivo and to control modulatory pathways in a spatio-temporal manner. Combining optogenetic and multi-electrode approaches, we established a new method to integrate light-guides into a multi-electrode system. With this method we are able to variably position the light-guide in defined regions relative to the recording electrode with micrometer precision. We show that PC firing can be precisely monitored and modulated by light-activation of channelrhodopsin-2 (ChR2) expressed in PCs, GCs and interneurons. Thus, this method is ideally suited to investigate the spatio/temporal modulation of PCs in anesthetized and in behaving mice.
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