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Intelligent Systems for Rehabilitation Engineering. Группа авторовЧитать онлайн книгу.

Intelligent Systems for Rehabilitation Engineering - Группа авторов


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G., Upper limb rehabilitation robotics after stroke: a perspective from the University of Padua, Italy. J. Rehabil. Med., 41, 12, 981–985, 2009.

      68. Schweighofer, N., Choi, Y., Winstein, C., Gordon, J., Task-oriented rehabilitation robotics. Am. J. Phys. Med. Rehabil., 91, 11, S270–S279, 2012.

      69. Cifuentes, C., Braidot, A., Rodríguez, L., Frisoli, M., Santiago, A., Frizera, A., Development of a wearable ZigBee sensor system for upper limb rehabilitation robotics, in: 2012 4th IEEE RAS & EMBS International Conference on Biomedical Robotics and Biomechatronics (BioRob), 2012, June, IEEE, pp. 1989–1994.

      70. Nef, T. and Lum, P., Improving backdrivability in geared rehabilitation robots. Med. Biol. Eng. Comput., 47, 4, 441–447, 2009.

      71. Ceseracciu, E., Reggiani, M., Sawacha, Z., Sartori, M., Spolaor, F., Cobelli, C., Pagello, E., SVM classification of locomotion modes using surface electromyography for applications in rehabilitation robotics, in: 19th International Symposium in Robot and Human Interactive Communication, 2010, September, IEEE, pp. 165–170.

      73. Ai, Q., Ding, B., Liu, Q., Meng, W., A subject-specific EMG-driven musculoskeletal model for applications in lower-limb rehabilitation robotics. Int. J. Humanoid Rob., 13, 03, 1650005, 2016.

      74. Wang, L., Peng, G., Yao, W., Biggar, S., Hu, C., Yin, X., Fan, Y., Soft robotics for hand rehabilitation, in: Intelligent Biomechatronics in Neurorehabilitation, pp. 167–176, Cambridge, Massachusetts, Academic Press, 2020.

      75. Neveryd, H., Eftring, H., Bolmsjö, G., The swedish experience of rehabilitation robotics, in: Proc. of Rehabilitation Robotics Workshop, 1999.

      76. Andrade, K.D.O., Fernandes, G., Caurin, G.A., Siqueira, A.A., Romero, R.A., Pereira, R.D.L., Dynamic player modelling in serious games applied to rehabilitation robotics, in: 2014 Joint Conference on Robotics: SBR-LARS Robotics Symposium and Robocontrol, 2014, October, IEEE, pp. 211–216.

      77. Andrade, K.D.O., Pasqual, T.B., Caurin, G.A., Crocomo, M.K., Dynamic difficulty adjustment with Evolutionary Algorithm in games for rehabilitation robotics, in: 2016 IEEE International Conference on Serious Games and Applications for Health (SeGAH), 2016, May, IEEE, pp. 1–8.

      78. Dallaway, J.L., Jackson, R.D., Timmers, P.H., Rehabilitation robotics in Europe. IEEE Trans. Rehabil. Eng., 3, 1, 35–45, 1995.

      79. Harwin, W.S., Rahman, T., Foulds, R.A., A review of design issues in rehabilitation robotics with reference to North American research. IEEE Trans. Rehabil. Eng., 3, 1, 3–13, 1995.

      80. Van der Loos, H.M., VA/Stanford rehabilitation robotics research and development program: lessons learned in the application of robotics technology to the field of rehabilitation. IEEE Trans. Rehabil. Eng., 3, 1, 46–55, 1995.

      1 * Corresponding author: [email protected]

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