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Acceptability of robotic technology in neuro-rehabilitation: Preliminary results on chronic stroke patients., , , , and . Computer Methods and Programs in Biomedicine, 116 (2): 116-122 (2014)A novel shoulder-elbow exoskeleton with series elastic actuators., , , , , , , , , and . BioRob, page 1248-1253. IEEE, (2016)Design and Development of a Robotic Platform Based on Virtual Reality Scenarios and Wearable Sensors for Upper Limb Rehabilitation and Visuomotor Coordination., , , , , , , , and . ICIC (3), volume 11645 of Lecture Notes in Computer Science, page 704-715. Springer, (2019)Randomized, sham-controlled trial based on transcranial direct current stimulation and wrist robot-assisted integrated treatment on subacute stroke patients: Intermediate results., , , , and . ICORR, page 555-560. IEEE, (2017)Effects of upper limb robot-assisted therapy on motor recovery of subacute stroke patients: A kinematic approach., , , , , and . ICORR, page 1-5. IEEE, (2013)NEUROExos: A powered elbow orthosis for post-stroke early neurorehabilitation., , , , , , and . EMBC, page 342-345. IEEE, (2013)Mechanisms of Motor Recovery in Chronic and Subacute Stroke Patients Following a Robot-Aided Training., , , , and . IEEE Trans. Haptics, 7 (2): 175-180 (2014)Robot-assisted upper limb rehabilitation in chronic stroke patients., , , and . EMBC, page 886-889. IEEE, (2013)