IEEE Transactions on Neural Systems and Rehabilitation Engineering · 2013 · 213 citations · 59 references
Gait AnalysisPhysical ActivityPowered ExoskeletonMovement BiomechanicsMotor ControlOrthopaedic SurgeryMovement AnalysisRehabilitation RoboticsKinesiologyHuman Locomotor AdaptationApplied PhysiologyKinematicsRehabilitation EngineeringExoskeletonHealth SciencesAnkle Muscle ActivationsAlex Ii ExoskeletonRehabilitationPhysical TherapyBipedal LocomotionPowered Hip ExoskeletonsWearable RoboticsPathological GaitHuman MovementWalkingMedicine
In this paper, we study the human locomotor adaptation to the action of a powered exoskeleton providing assistive torque at the user's hip during walking. To this end, we propose a controller that provides the user's hip with a fraction of the nominal torque profile, adapted to the specific gait features of the user from Winter's reference data . The assistive controller has been implemented on the ALEX II exoskeleton and tested on ten healthy subjects. Experimental results show that when assisted by the exoskeleton, users can reduce the muscle effort compared to free walking. Despite providing assistance only to the hip joint, both hip and ankle muscles significantly reduced their activation, indicating a clear tradeoff between hip and ankle strategy to propel walking.
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Human balance and posture control during standing and walking
DA Winter · Gait & Posture · 1995 · 3.3K citations