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Auto-adaptative Robot-aided Therapy based in 3D Virtual Tasks controlled by a Supervised and Dynamic Neuro-Fuzzy System.

, , , , , , and . IJIMAI, 3 (2): 63-68 (2015)

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Auto-adaptative Robot-aided Therapy based in 3D Virtual Tasks controlled by a Supervised and Dynamic Neuro-Fuzzy System., , , , , , and . IJIMAI, 3 (2): 63-68 (2015)Intelligent Multimodal Framework for Human Assistive Robotics Based on Computer Vision Algorithms., , , , , , and . Sensors, 18 (8): 2408 (2018)Integration of heterogeneous robotic systems in a surgical scenario., , , , and . BioRob, page 24-27. IEEE, (2014)Advantages of the Incorporation of an Active Upper-Limb Exoskeleton in Industrial Tasks., , , , , , and . ROBOT (2), volume 1093 of Advances in Intelligent Systems and Computing, page 477-484. Springer, (2019)Internet browsing application based on electrooculography for disabled people., , , and . Expert Syst. Appl., 40 (7): 2640-2648 (2013)Patient Evaluation of an Upper-Limb Rehabilitation Robotic Device for Home Use., , , , , , , , , and 1 other author(s). BioRob, page 450-455. IEEE, (2018)Design and Development of a Pneumatic Robot for Neurorehabilitation Therapies., , , , , , and . ROBOT (2), volume 418 of Advances in Intelligent Systems and Computing, page 315-326. Springer, (2015)Estimation of Human Arm Joints Using Two Wireless Sensors in Robotic Rehabilitation Tasks., , , , , , and . Sensors, 15 (12): 30571-30583 (2015)Kinematic reconstruction of the human arm joints in robot-aided therapies with Hermes robot., , , , , and . EMBC, page 1190-1193. IEEE, (2015)