首页> 外文会议>Annual Conference of Japanese Society for Medical and Biological Engineering;Annual International Conference of the IEEE Engineering in Medicine and Biology Society >NeuroRex: A clinical neural interface roadmap for EEG-based brain machine interfaces to a lower body robotic exoskeleton
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NeuroRex: A clinical neural interface roadmap for EEG-based brain machine interfaces to a lower body robotic exoskeleton

机译:NeuroRex:基于EEG的脑机与下半身机器人外骨骼的接口的临床神经接口路线图

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摘要

In this communication, a translational clinical brain-machine interface (BMI) roadmap for an EEG-based BMI to a robotic exoskeleton (NeuroRex) is presented. This multi-faceted project addresses important engineering and clinical challenges: It addresses the validation of an intelligent, self-balancing, robotic lower-body and trunk exoskeleton (Rex) augmented with EEG-based BMI capabilities to interpret user intent to assist a mobility-impaired person to walk independently. The goal is to improve the quality of life and health status of wheelchair-bounded persons by enabling standing and sitting, walking and backing, turning, ascending and descending stairs/curbs, and navigating sloping surfaces in a variety of conditions without the need for additional support or crutches.
机译:在此交流中,提出了基于EEG的BMI到机器人外骨骼(NeuroRex)的翻译临床脑机接口(BMI)路线图。这个多方面的项目解决了重要的工程和临床挑战:解决了智能,自平衡,机器人下身和躯干外骨骼(Rex)的验证,并增强了基于EEG的BMI功能,以解释用户意图以帮助实现移动性-有障碍的人要独立行走。目标是通过允许在各种情况下站立和坐着,行走和后坐,转弯,上升和下降楼梯/路缘以及在倾斜的路面上导航来改善轮椅使用者的生活质量和健康状况支持或拐杖。

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