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REAL TIME BIOSIGNAL-DRIVEN ILLUSION SYSTEM FOR UPPER LIMB REHABILITATION

机译:实时生物致幻术系统,用于上肢康复

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摘要

This paper presents design and development of real time biosignal-driven illusion system: Augmented Reality based Illusion System (ARIS) for upper limb motor rehabilitation. ARIS is a hospital / home based self-motivated whole arm rehabilitation system that aims to improve and restore the lost upper limb functions due to Cerebrovascular Accident (CVA) or stroke. Taking the advantage of human brain plasticity nature, the system incorporates with number of technologies to provide fast recovery by re-establishing the neural pathways and synapses that able to control the mobility. These technologies include Augmented Reality (AR) where illusion environment is developed, computer vision technology to track multiple colors in real time, EMG acquisition system to detect the user intention in real time and 3D modelling library to develop Virtual Arm (VA) model where human biomechanics are applied to mimic the movement of real arm. The system operates according to the user intention via surface electromyography (sEMG) threshold level. In the case of real arm cannot reach to the desired position, VA will take over the job of real arm to complete the exercise. The effectiveness of the developed ARIS has evaluated via questionnaire, graphical and analytical measurements which provided with positive results.
机译:本文介绍了实时生物信号驱动的幻觉系统的设计和开发:基于增强现实的幻觉系统(ARIS),用于上肢运动康复。 ARIS是一种基于医院/家庭的自我激励式全臂康复系统,旨在改善和恢复由于脑血管意外(CVA)或中风而丧失的上肢功能。该系统利用人脑可塑性的优势,结合了多种技术,可通过重新建立能够控制活动性的神经通路和突触来提供快速恢复。这些技术包括开发幻觉环境的增强现实(AR),实时跟踪多种颜色的计算机视觉技术,用于实时检测用户意图的EMG采集系统以及3D建模库以开发人类可以使用的虚拟手臂(VA)模型生物力学被用来模仿真实手臂的运动。该系统通过表面肌电图(sEMG)阈值水平根据用户意图进行操作。在实臂无法到达所需位置的情况下,VA将接管实臂的工作以完成锻炼。已开发的ARIS的有效性已通过问卷调查,图形和分析测量进行了评估,并获得了积极的结果。

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