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A motor cortex circuit for motor planning and movement
Author(s) -
Nuo Li,
Tsai Wen Chen,
Zengcai V. Guo,
Charles R. Gerfen,
Karel Svoboda
Publication year - 2015
Publication title -
nature
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 15.993
H-Index - 1226
eISSN - 1476-4687
pISSN - 0028-0836
DOI - 10.1038/nature14178
Subject(s) - neuroscience , premotor cortex , motor cortex , optogenetics , premovement neuronal activity , cortex (anatomy) , primary motor cortex , context (archaeology) , population , biological neural network , biology , psychology , anatomy , medicine , environmental health , dorsum , stimulation , paleontology
Activity in motor cortex predicts specific movements seconds before they occur, but how this preparatory activity relates to upcoming movements is obscure. We dissected the conversion of preparatory activity to movement within a structured motor cortex circuit. An anterior lateral region of the mouse cortex (a possible homologue of premotor cortex in primates) contains equal proportions of intermingled neurons predicting ipsi- or contralateral movements, yet unilateral inactivation of this cortical region during movement planning disrupts contralateral movements. Using cell-type-specific electrophysiology, cellular imaging and optogenetic perturbation, we show that layer 5 neurons projecting within the cortex have unbiased laterality. Activity with a contralateral population bias arises specifically in layer 5 neurons projecting to the brainstem, and only late during movement planning. These results reveal the transformation of distributed preparatory activity into movement commands within hierarchically organized cortical circuits.

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