Page 358 - Handbook of Biomechatronics
P. 358

Upper Extremity Rehabilitation Robots: A Survey              351


              Stienen, A.H.A., Hekman, E.E.G., Van der Helm, F.C.T., Prange, G.B., Jannink, M.J.A.,
                 Aalsma, A.M.M., Van der Kooij, H., 2007. Freebal: dedicated gravity compensation for
                 the upper extremities. In: 2007 IEEE 10th International Conference on Rehabilitation
                 Robotics (ICORR). IEEE, pp. 804–808. Available from: http://ieeexplore.ieee.org/
                 document/4428517/.
              Stoykov, M.E., Corcos, D.M., 2009. A review of bilateral training for upper extremity
                 hemiparesis. Occup. Ther. Int. 0966790316 (3–4), 190–203. https://doi.org/
                 10.1002/oti.277.
              Sugar, T.G., He, J., Koeneman, E.J., Koeneman, J.B., Herman, R., Huang, H.,
                 Schultz, R.S., Herring, D.E., Wanberg, J., Balasubramanian, S., Swenson, P.,
                 Ward, J.A., 2007. Design and control of RUPERT: a device for robotic upper extremity
                 repetitive therapy. IEEE Trans. Neural Syst. Rehabil. Eng. 15 (3), 336–346. https://doi.
                 org/10.1109/TNSRE.2007.903903.  Available  from:  http://ieeexplore.ieee.org/
                 document/4303112/.
              Sukal, T.M., Ellis, M.D., Dewald, J.P.A., 2006. Source of work area reduction following
                 hemiparetic stroke and preliminary intervention using the ACT 3D system. In: 2006
                 International Conference of the IEEE Engineering in Medicine and Biology Society.
                 IEEE, pp. 177–180. Available from: http://ieeexplore.ieee.org/document/4461714/.
              Sveistrup, H., 2004. Motor rehabilitation using virtual reality. J. Neuroeng. Rehabil.
                 174300031 (1), 10. https://doi.org/10.1186/1743-0003-1-10. Available from: http://
                 jneuroengrehab.biomedcentral.com/articles/10.1186/1743-0003-1-10.
              Thielbar, K.O., Triandafilou, K.M., Fischer, H.C., O’Toole, J.M., Corrigan, M.L.,
                 Ochoa, J.M., Stoykov, M.E., Kamper, D.G., 2017. Benefits of using a voice and
                 EMG-driven actuated glove to support occupational therapy for stroke survivors. IEEE
                 Trans. Neural Syst. Rehabil. Eng. 25 (3), 297–305. https://doi.org/10.1109/
                 TNSRE.2016.2569070.  Available  from:  http://ieeexplore.ieee.org/document/
                 7470432/.
              Thrasher, T.A., Zivanovic, V., McIlroy, W., Popovic, M.R., 2008. Rehabilitation of
                 reaching and grasping function in severe hemiplegic patients using functional electrical
                 stimulation therapy. Neurorehabil. Neural Repair 22 (6), 706–714. https://doi.org/
                 10.1177/1545968308317436. Available from: http://journals.sagepub.com/doi/10.
                 1177/1545968308317436.
              Todorov, E., Shadmehr, R., Bizzi, E., 1997. Augmented feedback presented in a virtual
                 environment accelerates learning of a difficult motor task. J. Mot. Behav. 29 (2),
                 147–158. https://doi.org/10.1080/00222899709600829. Available from: https://
                 www.tandfonline.com/doi/full/10.1080/00222899709600829.
              Tsai, B.C., Wang, W.W., Hsu, L.C., Fu, L.C., Lai, J.S., 2010. An articulated rehabilitation
                 robot for upper limb physiotherapy and training. In: IEEE/RSJ 2010 International Con-
                 ference on Intelligent Robots and Systems, IROS 2010—Conference Proceedings.
                 IEEE,  pp. 1470–1475.  Available  from:  http://ieeexplore.ieee.org/document/
                 5649567/.
              Tseng, C.M., Lai, C.L., Erdenetsogt, D., Chen, Y.F., 2014. A Microsoft Kinect based virtual
                 rehabilitation system. In: 2014 International Symposium on Computer, Consumer and
                 ControlIEEE, pp. 934–937. Available from: http://ieeexplore.ieee.org/document/
                 6846037/.
              Turolla, A., Dam, M., Ventura, L., Tonin, P., Agostini, M., Zucconi, C., Kiper, P.,
                 Cagnin, A., Piron, L., 2013. Virtual reality for the rehabilitation of the upper limb
                 motor function after stroke: a prospective controlled trial. J. Neuroeng. Rehabil.
                 1743-000310 (1), 85. https://doi.org/10.1186/1743-0003-10-85. Available from:
                 http://www.pubmedcentral.nih.gov/articlerender.fcgi?artid¼3734026&
                 tool¼pmcentrez&rendertype¼abstract.
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