DocumentCode :
1534983
Title :
The Integrated Virtual Environment Rehabilitation Treadmill System
Author :
Feasel, Jeff ; Whitton, Mary C. ; Kassler, Laura ; Brooks, Frederick P. ; Lewek, Michael D.
Author_Institution :
Dept. of Comput. Sci., Univ. of North Carolina-Chapel Hill, Chapel Hill, NC, USA
Volume :
19
Issue :
3
fYear :
2011
fDate :
6/1/2011 12:00:00 AM
Firstpage :
290
Lastpage :
297
Abstract :
Slow gait speed and interlimb asymmetry are prevalent in a variety of disorders. Current approaches to locomotor retraining emphasize the need for appropriate feedback during intensive, task-specific practice. This paper describes the design and feasibility testing of the integrated virtual environment rehabilitation treadmill (IVERT) system intended to provide real-time, intuitive feedback regarding gait speed and asymmetry during training. The IVERT system integrates an instrumented, split-belt treadmill with a front-projection, immersive virtual environment. The novel adaptive control system uses only ground reaction force data from the treadmill to continuously update the speeds of the two treadmill belts independently, as well as to control the speed and heading in the virtual environment in real time. Feedback regarding gait asymmetry is presented 1) visually as walking a curved trajectory through the virtual environment and 2) proprioceptively in the form of different belt speeds on the split-belt treadmill. A feasibility study involving five individuals with asymmetric gait found that these individuals could effectively control the speed of locomotion and perceive gait asymmetry during the training session. Although minimal changes in overground gait symmetry were observed immediately following a single training session, further studies should be done to determine the IVERT´s potential as a tool for rehabilitation of asymmetric gait by providing patients with congruent visual and proprioceptive feedback.
Keywords :
feedback; gait analysis; handicapped aids; medical disorders; patient rehabilitation; IVERT system; Integrated Virtual Environment Rehabilitation Treadmill; gait speed; ground reaction force data; interlimb asymmetry; intuitive feedback; locomotor retraining; medical disorder; split-belt treadmill; Belts; Force; Legged locomotion; Real time systems; Training; Virtual environment; Visualization; Adaptive systems; biomechanics; gait symmetry; locomotion rehabilitation; motor learning; self-paced treadmill; virtual environment; Algorithms; Cerebral Palsy; Computer Graphics; Feasibility Studies; Feedback, Psychological; Female; Functional Laterality; Gait Disorders, Neurologic; Humans; Leg; Locomotion; Male; Middle Aged; Movement; Paresis; Patient Satisfaction; Photic Stimulation; Postoperative Complications; Rehabilitation; Stroke; Treatment Outcome; User-Computer Interface;
fLanguage :
English
Journal_Title :
Neural Systems and Rehabilitation Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
1534-4320
Type :
jour
DOI :
10.1109/TNSRE.2011.2120623
Filename :
5784419
Link To Document :
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