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Congenitally blind individuals rapidly adapt to coriolis force perturbations of their reaching movementsReaching movements made to visual targets in a rotating room are initially deviated in path and endpoint in the direction of transient Coriolis forces generated by the motion of the arm relative to the rotating environment. With additional reaches, movements become progressively straighter and more accurate. Such adaptation can occur even in the absence of visual feedback about movement progression or terminus. Here we examined whether congenitally blind and sighted subjects without visual feedback would demonstrate adaptation to Coriolis forces when they pointed to a haptically specified target location. Subjects were tested pre-, per-, and postrotation at 10 rpm counterclockwise. Reaching to straight ahead targets prerotation, both groups exhibited slightly curved paths. Per-rotation, both groups showed large initial deviations of movement path and curvature but within 12 reaches on average had returned to prerotation curvature levels and endpoints. Postrotation, both groups showed mirror image patterns of curvature and endpoint to the per-rotation pattern. The groups did not differ significantly on any of the performance measures. These results provide compelling evidence that motor adaptation to Coriolis perturbations can be achieved on the basis of proprioceptive, somatosensory, and motor information in the complete absence of visual experience.
Document ID
20040112728
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
Authors
DiZio, P.
(Brandeis University Waltham, Massachusetts 02454-9110, United States)
Lackner, J. R.
Date Acquired
August 21, 2013
Publication Date
October 1, 2000
Publication Information
Publication: Journal of neurophysiology
Volume: 84
Issue: 4
ISSN: 0022-3077
Subject Category
Life Sciences (General)
Distribution Limits
Public
Copyright
Other
Keywords
NASA Discipline Neuroscience
Non-NASA Center

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