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Comparison of bipedal humanoid walking with human being using inertial measurement units and force-torque sensors., , , , , , , и . SII, стр. 198-203. IEEE, (2013)Design and Experiments on a Novel Biomechatronic Hand., , , , и . ISER, том 271 из Lecture Notes in Control and Information Sciences, стр. 159-168. Springer, (2000)Development of the wireless ultra-miniaturized inertial measurement unit WB-4: Preliminary performance evaluation., , , , , и . EMBC, стр. 6927-6930. IEEE, (2011)Perception of emotion and emotional intensity in humanoid robots gait., , , , и . ROBIO, стр. 1276-1281. IEEE, (2013)Surface EMG and heartbeat analysis preliminary results in surgical training: Dry boxes and live tissue., , , , , , , , , и . EMBC, стр. 1113-1116. IEEE, (2011)Development of a human-like neurologic model to simulate the influences of diseases for neurologic examination training., , , , , , , , , и 1 other автор(ы). ICRA, стр. 4826-4831. IEEE, (2013)Design, fabrication and preliminary results of a novel anthropomorphic hand for humanoid robotics: RCH-1., , , , , , , , и . IROS, стр. 266-271. IEEE, (2004)Emotional gait: Effects on humans' perception of humanoid robots., , , , , и . RO-MAN, стр. 261-266. IEEE, (2014)Development of a real-time IMU-based motion capture system for gait rehabilitation., , , , , , , , , и 2 other автор(ы). ROBIO, стр. 2100-2105. IEEE, (2013)An integrated approach for the design and development of a grasping and manipulation system in humanoid robotics., , , , , , , , и . IROS, стр. 1-7. IEEE, (2000)