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Analysis of muscle coordination in human pedaling and implementation with a musculoskeletal robot., , , , , , , и . Humanoids, стр. 606-611. IEEE, (2012)Extraction and implementation of muscle synergies in neuro-mechanical control of upper limb movement., , , , , , , и . Adv. Robotics, 28 (11): 745-757 (2014)Tacit representation of muscle activities during coordination training: Muscle synergy analysis to visualize motor enhancement in virtual trajectory of multi-joint arm movement., , , , , , , , и . BioRob, стр. 270-275. IEEE, (2014)Muscle synergy analysis of human adaptation to a variable-stiffness exoskeleton: Human walk with a knee exoskeleton with pneumatic artificial muscles., , , , , , , и . Humanoids, стр. 638-644. IEEE, (2012)A Novel Vibrotactile Biofeedback Device for Optimizing Neuromuscular Control in Piano Playing., и . VR, стр. 1554-1555. IEEE, (2019)A novel muscle synergy extraction method to explain the equilibrium-point trajectory and endpoint stiffness during human upper-limb movements on a horizontal plane., , , , , , , , и . BioRob, стр. 621-626. IEEE, (2014)Exploiting invariant structure for controlling multiple muscles in anthropomorphic legs: An inspiration from electromyography analysis of human pedaling., , , , , и . Humanoids, стр. 88-93. IEEE, (2015)Exploiting invariant structure for controlling multiple muscles in anthropomorphic legs: II. Experimental evidence for three equilibrium-point-based synergies during human pedaling., , , , , , , , , и . Humanoids, стр. 1167-1172. IEEE, (2016)Pilot study on quantitative assessment of muscle imbalance: Differences of muscle synergies, equilibrium-point trajectories, and endpoint stiffness in normal and pathological upper-limb movements., , , , , , , , , и 2 other автор(ы). EMBC, стр. 5784-5787. IEEE, (2014)Noncontact and High-Precision Sensing System for Piano Keys Identified Fingerprints of Virtuosity., и . Sensors, 22 (13): 4891 (2022)