4.8 Article

Deconstruction of Corticospinal Circuits for Goal-Directed Motor Skills

Journal

CELL
Volume 171, Issue 2, Pages 440-+

Publisher

CELL PRESS
DOI: 10.1016/j.cell.2017.08.014

Keywords

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Funding

  1. Craig Neilsen Foundation
  2. NINDS [NS096294]
  3. NIMH [ZIA MH002897, ZIA MH002497]
  4. NIH [P30 HD018655, P30EY012196]

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Corticospinal neurons (CSNs) represent the direct cortical outputs to the spinal cord and play important roles in motor control across different species. However, their organizational principle remains unclear. By using a retrograde labeling system, we defined the requirement of CSNs in the execution of a skilled forelimb food-pellet retrieval task in mice. In vivo imaging of CSN activity during performance revealed the sequential activation of topographically ordered functional ensembles with moderate local mixing. Region-specific manipulations indicate that CSNs from caudal or rostral forelimb area control reaching or grasping, respectively, and both are required in the transitional pronation step. These region-specific CSNs terminate in different spinal levels and locations, therefore preferentially connecting with the premotor neurons of muscles engaged in different steps of the task. Together, our findings suggest that spatially defined groups of CSNs encode different movement modules, providing a logic for parallel-ordered corticospinal circuits to orchestrate multistep motor skills.

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