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The effects of variable mechanical parameters on peak power and energy consumption of ankle-foot prostheses at different speeds.

, , , , , and . Adv. Robotics, 32 (23): 1229-1240 (2018)

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ED-FNN: A New Deep Learning Algorithm to Detect Percentage of the Gait Cycle for Powered Prostheses., , , , , and . Sensors, 18 (7): 2389 (2018)On the use of adaptable compliant actuators in prosthetics, rehabilitation and assistive robotics., , , , , , and . RoMoCo, page 1-6. IEEE, (2013)The effects of variable mechanical parameters on peak power and energy consumption of ankle-foot prostheses at different speeds., , , , , and . Adv. Robotics, 32 (23): 1229-1240 (2018)The Ankle Mimicking Prosthetic Foot 3 - Locking mechanisms, actuator design, control and experiments with an amputee., , , , , , and . Robotics Auton. Syst., (2017)Modeling, Design and Test-Bench Validation of a Semi-Active Propulsive Ankle Prosthesis With a Clutched Series Elastic Actuator., , , , , , and . IEEE Robotics Autom. Lett., 4 (2): 1823-1830 (2019)Lock Your Robot: A Review of Locking Devices in Robotics., , , , and . IEEE Robotics Autom. Mag., 22 (1): 106-117 (2015)The AMP-Foot 2.1 : actuator design, control and experiments with an amputee., , , , , and . Robotica, 32 (8): 1347-1361 (2014)