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Publication : Movement Initiation Signals in Mouse Whisker Motor Cortex.

First Author  Sreenivasan V Year  2016
Journal  Neuron Volume  92
Issue  6 Pages  1368-1382
PubMed ID  28009277 Mgi Jnum  J:253220
Mgi Id  MGI:6109076 Doi  10.1016/j.neuron.2016.12.001
Citation  Sreenivasan V, et al. (2016) Movement Initiation Signals in Mouse Whisker Motor Cortex. Neuron 92(6):1368-1382
abstractText  Frontal cortex plays a central role in the control of voluntary movements, which are typically guided by sensory input. Here, we investigate the function of mouse whisker primary motor cortex (wM1), a frontal region defined by dense innervation from whisker primary somatosensory cortex (wS1). Optogenetic stimulation of wM1 evokes rhythmic whisker protraction (whisking), whereas optogenetic inactivation of wM1 suppresses initiation of whisking. Whole-cell membrane potential recordings and silicon probe recordings of action potentials reveal layer-specific neuronal activity in wM1 at movement initiation, and encoding of fast and slow parameters of movements during whisking. Interestingly, optogenetic inactivation of wS1 caused hyperpolarization and reduced firing in wM1, together with reduced whisking. Optogenetic stimulation of wS1 drove activity in wM1 with complex dynamics, as well as evoking long-latency, wM1-dependent whisking. Our results advance understanding of a well-defined frontal region and point to an important role for sensory input in controlling motor cortex.
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