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Characterization and modeling of living cell based actuation for bio-syncretic robot development., , , , и . NEMS, стр. 296-301. IEEE, (2015)A Nanomanipulation System Based on A Sample-Scanning AFM., , , , , и . ROBIO, стр. 623-628. IEEE, (2004)Soft Exoskeleton With Fully Actuated Thumb Movements for Grasping Assistance., , , , , , , , и . IEEE Trans. Robotics, 38 (4): 2194-2207 (2022)Energy-Based Motion Control for Pneumatic Artificial Muscle Actuated Robots With Experiments., , , , , и . IEEE Trans. Ind. Electron., 69 (7): 7295-7306 (2022)In-Phase Bias Modulation Mode of Scanning Ion Conductance Microscopy With Capacitance Compensation., , , , и . IEEE Trans. Ind. Electron., 62 (10): 6508-6518 (2015)A Magnetic Continuum Robot With Multi-Mode Control Using Opposite-Magnetized Magnets., , , и . IEEE Robotics Autom. Lett., 6 (2): 2485-2492 (2021)Simultaneous Measurement of Multiple Mechanical Properties of Single Cells Using AFM by Indentation and Vibration., , , , , и . IEEE Trans. Biomed. Eng., 64 (12): 2771-2780 (2017)A reinforcement learning algorithm acquires demonstration from the training agent by dividing the task space., , , , и . Neural Networks, (июля 2023)Learning-Based Error-Constrained Motion Control for Pneumatic Artificial Muscle-Actuated Exoskeleton Robots With Hardware Experiments., , , , , и . IEEE Trans Autom. Sci. Eng., 19 (4): 3700-3711 (2022)Drift Compensation in AFM-Based Nanomanipulation by Strategic Local Scan., , и . IEEE Trans Autom. Sci. Eng., 9 (4): 755-762 (2012)