A. Frisoli, F. Salsedo, M. Bergamasco, B. Rossi, M. C. Carboncini
2009.4.1Applied Bionics and Biomechanics
tlooto Summary
The design and clinical validation of an upper-limb force-feedback exoskeleton, the L-EXOS, for robotic-assisted rehabilitation in virtual reality VR is presented and a significant reduction of the performance error in the reaching task paired t-test is shown.
Abstract
This paper presents the design and the clinical validation of an upper-limb force-feedback exoskeleton, the L-EXOS, for robotic-assisted rehabilitation in virtual reality VR. The L-EXOS is a five degrees of freedom exoskeleton with a wearable structure and anthropomorphic workspace that can cover the full range of motion of human arm. A specific VR application focused on the reaching task was developed and evaluated on a group of eight post-stroke patients, to assess the efficacy of the system for the rehabilitation of upper limb. The evaluation showed a significant reduction of the performance error in the reaching task paired t-test, p < 0.02.
Citation format
FRISOLI, A., et al. A force-feedback exoskeleton for upper-limb rehabilitation in virtual reality. Applied Bionics and Biomechanics, 2009, 6: 115–126.