Motor learning reveals the existence of multiple codes for movement planning.
نویسندگان
چکیده
Coordinate systems for movement planning are comprised of an anchor point (e.g., retinocentric coordinates) and a representation (encoding) of the desired movement. One of two representations is often assumed: a final-position code describing desired limb endpoint position and a vector code describing movement direction and extent. The existence of movement-planning systems using both representations is controversial. In our experiments, participants completed reaches grouped by target location (providing practice for a final-position code) and the same reaches grouped by movement vector (providing vector-code practice). Target-grouped reaches resulted in the isotropic (circular) distribution of errors predicted for position-coded reaches. The identical reaches grouped by vector resulted in error ellipses aligned with the reach direction, as predicted for vector-coded reaches. Manipulating only recent movement history to provide better learning for one or the other movement code, we provide definitive evidence that both movement representations are used in the identical task.
منابع مشابه
Motor Learning Reveals the Existence of Multiple Codes for Movement Planning 5 6 Abbreviated Title: Multiple Codes for Movement Planning 7
32 Coordinate systems for movement planning are comprised of an anchor point (e.g., 33 retinocentric coordinates) and a representation (encoding) of the desired movement. 34 One of two representations is often assumed: a final-position code describing desired 35 limb endpoint position and a vector code describing movement direction and extent. The 36 existence of movement-planning systems using...
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عنوان ژورنال:
- Journal of neurophysiology
دوره 108 10 شماره
صفحات -
تاریخ انتشار 2012