DocumentCode
1866778
Title
Comparing adaptation of constrained and unconstrained movements in three dimensions
Author
Scharver, Christopher ; Patton, James ; Kenyon, Robert ; Kersten, Eric
Author_Institution
Rehabilitation Inst. of Chicago, IL, USA
fYear
2005
fDate
28 June-1 July 2005
Firstpage
434
Lastpage
439
Abstract
This paper describes targeted reaching experiments conducted using a new augmented reality system. Combining a large-workspace immersive virtual environment with physical force feedback, the system distorted subjects´ movements using a viscous curl force field. Following previous experiments using a different robot, half the subjects were constrained to horizontal, planar movements. The remaining subjects performed unconstrained movements throughout the 3D workspace. Examining after-effects as an indication of learning, we found that constrained subjects learned the force field. However, it was difficult to detect whether the unconstrained subjects learned forces of identical magnitude. Our results found that force fields strengths eliciting constrained 2D adaptation have difficulty exhibiting after-effects for unconstrained 3D movements. The increased motor variability for 3D reaching movements requires consideration for future experimental design.
Keywords
augmented reality; force feedback; medical computing; medical robotics; augmented reality system; constrained movement; physical force feedback; unconstrained movement; viscous curl force field; Augmented reality; Design for experiments; Displays; Force feedback; Haptic interfaces; Laboratories; Nonlinear distortion; Rehabilitation robotics; Robot sensing systems; Virtual environment;
fLanguage
English
Publisher
ieee
Conference_Titel
Rehabilitation Robotics, 2005. ICORR 2005. 9th International Conference on
Print_ISBN
0-7803-9003-2
Type
conf
DOI
10.1109/ICORR.2005.1501136
Filename
1501136
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