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Monitoring functional arm movement for home-based therapy after stroke

Robert J. Sanchez, David J. Reinkensmeyer, Purva Shah, Jinzhi Liu, Stephen M. Rao, Richard A. Smith, Steven C. Cramer, Tariq Rahman, J.E. Bobrow

Year
2005
Citations
76

Abstract

The goal of this project is to develop a means for individuals with stroke to practice arm movement therapy at home with remote monitoring. We previously developed a Web-based system for repetitive movement training (Java Therapy). This paper describes a new input device for the system that measures and assists in naturalistic arm movement, as well as software enhancements. The new input device is an instrumented, adult-sized version of Wilmington robotic exoskeleton (WREX), which is a five degrees-of-freedom orthosis that counterbalances the weight of the arm using elastic bands. To test the ability of the new device (Training-WREX or "T-WREX") to measure and assist in functional arm movements, we measured five chronic stroke subjects' movement ability while wearing the orthosis without gravity balance compared to wearing the orthosis with gravity balance. T-WREX's gravity balance function improved a clinical measure of arm movement (Fugl-Meyer Score), range of motion of reaching movements, and accuracy of drawing movements. Coupled with an enhanced version of Java Therapy, T-WREX will thus provide a means to assist functional arm movement training at home, either over the Web in real-time, or stand-alone with periodic communication with a remote site.

Keywords

Physical medicine and rehabilitationMovement (music)Functional movementBalance (ability)Activities of daily livingComputer scienceRehabilitationExoskeletonRobotic armPhysical therapy

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