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Sylos-Labini, F. (author), La Scaleia, V. (author), d'Avella, A. (author), Pisotta, I. (author), Tamburella, F. (author), Scivoletto, G. (author), Molinari, M. (author), Wang, S. (author), Wang, L. (author), Van Asseldonk, E. (author), Van der Kooij, H. (author), Hoellinger, T. (author), Cheron, G. (author), Thorsteinsson, F. (author), Ilzkovitz, M. (author), Gancet, J. (author), Hauffe, R. (author), Zanov, F. (author), Lacquaniti, F. (author), Ivanenko, Y.P. (author)
Neuroprosthetic technology and robotic exoskeletons are being developed to facilitate stepping, reduce muscle efforts, and promote motor recovery. Nevertheless, the guidance forces of an exoskeleton may influence the sensory inputs, sensorimotor interactions and resulting muscle activity patterns during stepping. The aim of this study was to...
journal article 2014
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Fleerkotte, B.M. (author), Koopman, B. (author), Buurke, J.H. (author), Van Asseldonk, E.H.F. (author), Van der Kooij, H. (author), Rietman, J.S. (author)
Background There is increasing interest in the use of robotic gait-training devices in walking rehabilitation of incomplete spinal cord injured (iSCI) individuals. These devices provide promising opportunities to increase the intensity of training and reduce physical demands on therapists. Despite these potential benefits, robotic gait-training...
journal article 2014