Robot-Assisted Reach Training for Improving Upper Extremity Function of Chronic Stroke
Author:
Affiliation:
1. Department of Rehabilitative and Assistive Technology, Korea National Rehabilitation Research Institute, Korea National Rehabilitation Center
Publisher
Tohoku University Medical Press
Subject
General Biochemistry, Genetics and Molecular Biology,General Medicine
Link
https://www.jstage.jst.go.jp/article/tjem/237/2/237_149/_pdf
Reference27 articles.
1. Basteris, A., Nijenhuis, S.M., Stienen, A.H., Buurke, J.H., Prange, G.B. & Amirabdollahian, F. (2014) Training modalities in robot-mediated upper limb rehabilitation in stroke: a framework for classification based on a systematic review. J. Neuroeng. Rehabil., 11, 111.
2. Bosecker, C., Dipietro, L., Volpe, B. & Krebs, H.I. (2010) Kinematic robot-based evaluation scales and clinical counterparts to measure upper limb motor performance in patients with chronic stroke. Neurorehabil. Neural Repair, 24, 62-69.
3. Burgar, C.G., Lum, P.S., Scremin, A.M., Garber, S.L., Van der Loos, H.F., Kenney, D. & Shor, P. (2011) Robot-assisted upper-limb therapy in acute rehabilitation setting following stroke: Department of Veterans Affairs multisite clinical trial. J. Rehabil. Res. Dev., 48, 445-458.
4. Frisoli, A., Procopio, C., Chisari, C., Creatini, I., Bonfiglio, L., Bergamasco, M., Rossi, B. & Carboncini, M.C. (2012) Positive effects of robotic exoskeleton training of upper limb reaching movements after stroke. J. Neuroeng. Rehabil., 9, 36.
5. Hubbard, I.J., Parsons, M.W., Neilson, C. & Carey, L.M. (2009) Task-specific training: evidence for and translation to clinical practice. Occup. Ther. Int., 16, 175-189.
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