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. 2015 May;23(3):441-9.
doi: 10.1109/TNSRE.2014.2346193. Epub 2014 Aug 12.

An assistive control approach for a lower-limb exoskeleton to facilitate recovery of walking following stroke

An assistive control approach for a lower-limb exoskeleton to facilitate recovery of walking following stroke

Spencer A Murray et al. IEEE Trans Neural Syst Rehabil Eng. 2015 May.

Abstract

This paper presents a control approach for a lower-limb exoskeleton intended to facilitate recovery of walking in individuals with lower-extremity hemiparesis after stroke. The authors hypothesize that such recovery is facilitated by allowing the patient rather than the exoskeleton to provide movement coordination. As such, an assistive controller that provides walking assistance without dictating the spatiotemporal nature of joint movement is described here. Following a description of the control laws and finite state structure of the controller, the authors present the results of an experimental implementation and preliminary validation of the control approach, in which the control architecture was implemented on a lower limb exoskeleton, and the exoskeleton implemented in an experimental protocol on three subjects with hemiparesis following stroke. In a series of sessions in which each patient used the exoskeleton, all patients showed substantial single-session improvements in all measured gait outcomes, presumably as a result of using the assistive controller and exoskeleton.

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