首页> 外文会议>2012 4th IEEE RAS amp; EMBS International Conference on Biomedical Robotics and Biomechatronics >Towards a portable assistive arm exoskeleton for stroke patient rehabilitation controlled through a brain computer interface
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Towards a portable assistive arm exoskeleton for stroke patient rehabilitation controlled through a brain computer interface

机译:通过大脑计算机界面控制中风患者康复的便携式辅助手臂外骨骼

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Recent research has shown the benefits of using robotic devices to aid in stroke patient rehabilitation. In addition, the use of brain computer interfaces is showing promising applications in both controlling robotic devices and aiding in neural rehabilitation. Unfortunately, traditional rehabilitative devices are cumbersome and are not being used outside the laboratory environment, therefore potentially limiting patient access to these new rehabilitative technologies. This project seeks to address this issue by working toward creating a portable rehabilitative system consisting of an arm exoskeleton controlled by a brain computer interface (BCI). A wireless commercially available BCI system was used (Emotiv EPOC) to actuate the device in a single direction. A pilot study was conducted to evaluate the performance of the system on four healthy adult volunteers. Results show all users were able to control the device with success rates above chance.
机译:最近的研究表明,使用机器人设备帮助中风患者康复的好处。另外,大脑计算机接口的使用在控制机器人设备和帮助神经康复方面显示出有希望的应用。不幸的是,传统的康复设备笨重并且没有在实验室环境之外使用,因此潜在地限制了患者使用这些新的康复技术。该项目旨在通过创建一个便携式康复系统来解决这个问题,该系统由受大脑计算机接口(BCI)控制的手臂外骨骼组成。使用无线商用BCI系统(Emotiv EPOC)在单个方向上启动设备。进行了一项初步研究,以评估该系统在四名健康成人志愿者身上的表现。结果显示,所有用户都能够以高于偶然的成功率来控制设备。

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