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Self-stabilizing bipedal locomotion employing neural oscillators.

, , , , and . Humanoids, page 8-15. IEEE, (2008)

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Self-stabilizing bipedal locomotion employing neural oscillators., , , , and . Humanoids, page 8-15. IEEE, (2008)The enhanced performance of a robotic arm control based on neural oscillator networks., , , , , and . IECON, page 803-808. IEEE, (2016)Variable Admittance Control Based on Human-Robot Collaboration Observer Using Frequency Analysis for Sensitive and Safe Interaction., and . Sensors, 21 (5): 1899 (2021)An Overview of Genomic Sequence Variation Markup Language (GSVML)., , , , and . AMIA, AMIA, (2006)A Novel 4-DoF Robotic Link Mechanism with E-CoSMo: Kinematics Based Torque Analysis., , , and . IROS, page 3577-3582. IEEE, (2019)Self-sustaining rhythmic arm motions using neural oscillators., , , and . IROS, page 3585-3590. IEEE, (2008)Locomotion Imitation of Humanoid Using Goal-directed Self-adjusting Adaptor., , , and . IROS, page 5650-5656. IEEE, (2006)A 4-bar mechanism based for knee assist robotic exoskeleton using singular configuration., , , , and . IECON, page 674-680. IEEE, (2016)Task space control considering passive muscle stiffness for redundant robotic arms., , , , , and . Intelligent Service Robotics, 8 (2): 93-104 (2015)Entrainment-enhanced neural oscillator for rhythmic motion control., , , and . Intell. Serv. Robotics, 1 (4): 303-311 (2008)