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Development of a fuzzy logic based intelligent system for autonomous guidance of post-stroke rehabilitation exercise

Rajibul Huq, Rosalie H. Wang, Elaine Lu, Debbie Hébert, Hervé Lacheray, Alex Mihailidis

Year
2013
Citations
9

Abstract

This paper presents preliminary studies in developing a fuzzy logic based intelligent system for autonomous post-stroke upper-limb rehabilitation exercise. The intelligent system autonomously varies control parameters to generate different haptic effects on the robotic device. The robotic device is able to apply both resistive and assistive forces for guiding the patient during the exercise. The fuzzy logic based decision-making system estimates muscle fatigue of the patient using exercise performance and generates a combination of resistive and assistive forces so that the stroke survivor can exercise for longer durations with increasing control. The fuzzy logic based system is initially developed using a study with healthy subjects and preliminary results are also presented to validate the developed system with healthy subjects. The next stage of this work will collect data from stroke survivors for further development of the system.

Keywords

Fuzzy logicRehabilitation roboticsRehabilitationStroke (engine)Computer sciencePhysical medicine and rehabilitationFuzzy control systemRobotIntelligent controlController (irrigation)

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