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How Many Muscles? Optimal Muscles Set Search for Optimizing Myocontrol Performance.

, , , , and . Frontiers Comput. Neurosci., (2021)

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A Random Tree Forest decision support system to personalize upper extremity robot-assisted rehabilitation in stroke: a pilot study., , , , , , , and . ICORR, page 1-6. IEEE, (2022)How Many Muscles? Optimal Muscles Set Search for Optimizing Myocontrol Performance., , , , and . Frontiers Comput. Neurosci., (2021)Task-Oriented Muscle Synergy Extraction Using An Autoencoder-Based Neural Model., , , , , and . Information, 11 (4): 219 (2020)Wearable Haptics in a Modern VR Rehabilitation System: Design Comparison for Usability and Engagement., , , and . EuroHaptics, volume 13235 of Lecture Notes in Computer Science, page 274-282. Springer, (2022)Evaluating Generalization Capability of Bio-inspired Models for a Myoelectric Control: A Pilot Study., , , , , and . ICIC (3), volume 11645 of Lecture Notes in Computer Science, page 739-750. Springer, (2019)Towards online myoelectric control based on muscle synergies-to-force mapping for robotic applications., , , , and . Neurocomputing, (2021)EXOSMOOTH: Test of Innovative EXOskeleton Control for SMOOTH Assistance, With and Without Ankle Actuation., , , , , and . HRI, page 890-894. IEEE / ACM, (2022)Evaluating Efficacy of Continuous Assistance Control During Orientation Tasks with an Active Wrist Exoskeleton., , , , , , and . ICAR, page 545-550. IEEE, (2023)An undercomplete autoencoder to extract muscle synergies for motor intention detection., , , , , , , and . IJCNN, page 1-8. IEEE, (2019)A Decision Support System to Provide an Ongoing Prediction of Robot-Assisted Rehabilitation Outcome in Stroke Survivors., , , , , , , and . ICORR, page 1-6. IEEE, (2023)