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Human Lower Limb Joint Biomechanics in Daily Life Activities: A Literature Based Requirement Analysis for Anthropomorphic Robot Design., , и . Front. Robotics and AI, (2020)Prosthesis-User-in-the-Loop: A user-specific biomechanical modeling and simulation environment., , , , , , и . EMBC, стр. 4181-4184. IEEE, (2012)Prosthesis-user-in-the-loop: User-centered design parameters and visual simulation., , , , , , и . EMBC, стр. 1929-1932. IEEE, (2012)Template-based hopping control of a bio-inspired segmented robotic leg., , , и . BioRob, стр. 35-40. IEEE, (2016)Proprioceptive control of an over-actuated hexapod robot in unstructured terrain., , и . IROS, стр. 2042-2049. IEEE, (2016)Benchmarking Wearable Robots: Challenges and Recommendations From Functional, User Experience, and Methodological Perspectives., , , , , , и . Frontiers Robotics AI, (2020)Design and Implementation of a Personalizable Alternative Mouse and Keyboard Interface for Individuals with Limited Upper Limb Mobility., , , и . Multimodal Technol. Interact., 6 (12): 104 (декабря 2022)Low Creep 3D-Printed Piezoresistive Force Sensor for Structural Integration., , , , , , , и . SENSORS, стр. 1-4. IEEE, (2023)Modeling Human Behavior in Human-Robot Interactions., , , и . HRI, стр. 1296-1297. IEEE / ACM, (2022)Power-optimized stiffness and nonlinear position control of an actuator with Variable Torsion Stiffness., , , , , и . AIM, стр. 387-392. IEEE, (2013)