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

机译:基于模糊逻辑的智能制度,用于行程后康复运动的自主指导

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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.
机译:本文提出了开发基于模糊逻辑智能系统的初步研究,用于自主行程中肢康复运动。智能系统自主地改变控制参数以在机器人设备上产生不同的触觉效果。机器人装置能够在运动期间施加用于引导患者的电阻和辅助力。基于模糊的逻辑决策系统估计使用运动性能的患者的肌肉疲劳,并产生电阻和辅助力的组合,使得行程幸存者可以随着控制的增加而锻炼更长的持续时间。基于模糊的逻辑系统最初使用具有健康受试者的研究和初步结果进行开发,并提出了初步结果以验证具有健康受试者的发达系统。这项工作的下一阶段将从中风幸存者收集数据以进一步发展该系统。

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