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Walking Assistance Using Artificial Primitives: A Novel Bioinspired Framework Using Motor Primitives for Locomotion Assistance Through a Wearable Cooperative Exoskeleton.

, , , , , , and . IEEE Robot. Automat. Mag., 23 (1): 83-95 (2016)

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Experimental Validation of Motor Primitive-Based Control for Leg Exoskeletons during Continuous Multi-Locomotion Tasks., , , , , , and . Front. Neurorobot., (2017)Evaluation of an Integrated System of Wearable Physiological Sensors for Stress Monitoring in Working Environments by Using Biological Markers., , , , , , , and . IEEE Trans. Biomed. Engineering, 65 (8): 1748-1758 (2018)The Challenges and Achievements of Experimental Implementation of an Active Transfemoral Prosthesis Based on Biological Quasi-Stiffness: The CYBERLEGs Beta-Prosthesis., , , , , , , , and . Front. Neurorobot., (2018)CYBERLEGs: A User-Oriented Robotic Transfemoral Prosthesis with Whole-Body Awareness Control., , , , , , , and . IEEE Robot. Automat. Mag., 21 (4): 82-93 (2014)Walking Assistance Using Artificial Primitives: A Novel Bioinspired Framework Using Motor Primitives for Locomotion Assistance Through a Wearable Cooperative Exoskeleton., , , , , , and . IEEE Robot. Automat. Mag., 23 (1): 83-95 (2016)Whole Body Awareness for Controlling a Robotic Transfemoral Prosthesis., , , , , , , , , and 1 other author(s). Front. Neurorobot., (2017)