4.6 Article

Neural Coding of Movement Direction in the Healthy Human Brain

Journal

PLOS ONE
Volume 5, Issue 10, Pages -

Publisher

PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pone.0013330

Keywords

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Funding

  1. Nova Scotia Health Research Foundation
  2. Dalhousie Medical Research Foundation
  3. Canadian Institutes of Health Research/Institutes de recherche en sante du Canada (CIHR/IRCS)
  4. Nova Scotia Health Research Foundation (NSHRF)
  5. Sir Edward Youde Memorial Overseas Fellowship
  6. Dalhousie Faculty of Medicine Clinical Research
  7. CIHR

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Neurophysiological studies in monkeys show that activity of neurons in primary cortex (M1), pre-motor cortex (PMC), and cerebellum varies systematically with the direction of reaching movements. These neurons exhibit preferred direction tuning, where the level of neural activity is highest when movements are made in the preferred direction (PD), and gets progressively lower as movements are made at increasing degrees of offset from the PD. Using a functional magnetic resonance imaging adaptation (fMRI-A) paradigm, we show that PD coding does exist in regions of the human motor system that are homologous to those observed in non-human primates. Consistent with predictions of the PD model, we show adaptation (i.e., a lower level) of the blood oxygen level dependent (BOLD) time-course signal in M1, PMC, SMA, and cerebellum when consecutive wrist movements were made in the same direction (0 degrees offset) relative to movements offset by 90 degrees or 180 degrees. The BOLD signal in dorsolateral prefrontal cortex adapted equally in all movement offset conditions, mitigating against the possibility that the present results are the consequence of differential task complexity or attention to action in each movement offset condition.

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