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Updated: May 17, 2026

Engineering Platform and Experimental Protocol for Design and Evaluation of a Neurally-controlled Powered Transfemoral Prosthesis
Published on: July 22, 2014
Control of stair ascent and descent with a powered transfemoral prosthesis
Brian Edward Lawson1, Huseyin Atakan Varol, Amanda Huff
1Department of Mechanical Engineering, Vanderbilt University, Nashville, TN 37235, USA. brian.e.lawson@vanderbilt.edu
Abstract:
This paper presents a finite state-based control system for a powered transfemoral prosthesis that provides stair ascent and descent capability. The control system was implemented on a powered prosthesis and evaluated by a unilateral, transfemoral amputee subject. The ability of the powered prosthesis to provide stair ascent and descent capability was assessed by comparing the gait kinematics, as recorded by a motion capture system, with the kinematics provided by a passive prosthesis, in addition to those recorded from a set of healthy subjects. The results indicate that the powered prosthesis provides gait kinematics that are considerably more representative of healthy gait, relative to the passive prosthesis, for both stair ascent and descent.

