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Development of a compliance controller to reduce energy consumption for bipedal robots., , , , , и . Auton. Robots, 24 (4): 419-434 (2008)A strategy to combine active trajectory control with the exploitation of the natural dynamics to reduce energy consumption for bipedal robots., , , , и . Humanoids, стр. 7-12. IEEE, (2007)The Pneumatic Biped "Lucy" Actuated with Pleated Pneumatic Artificial Muscles., , , , , и . Auton. Robots, 18 (2): 201-213 (2005)Toward motor-unit-recruitment actuators for soft robotics., , , и . BioRob, стр. 887-892. IEEE, (2014)On the use of adaptable compliant actuators in prosthetics, rehabilitation and assistive robotics., , , , , , и . RoMoCo, стр. 1-6. IEEE, (2013)A Survey of Expectations About the Role of Robots in Robot-Assisted Therapy for Children with ASD: Ethical Acceptability, Trust, Sociability, Appearance, and Attachment., , , , , , и . Science and Engineering Ethics, 22 (1): 47-65 (2016)Editorial: Special Issue on the Ninth International Conference on Climbing and Walking Robots (CLAWAR 2006)., и . Int. J. Robotics Res., 28 (2): 243-244 (2009)An Engineering Outreach Activity: How to Develop a Tendon-Based Soft Robotic Finger?, , , и . IEEE Trans. Educ., 67 (1): 100-108 (февраля 2024)Integrating Walking and Vision to Increase Humanoid Autonomy., , , , , , , и . Int. J. Humanoid Robotics, 5 (2): 287-310 (2008)Integration of 3D Printed Flexible Pressure Sensors into Physical Interfaces for Wearable Robots., , , , , , , и . Sensors, 21 (6): 2157 (2021)