首页> 外文会议>Neural Engineering, 2009. NER '09 >A feasibility study of non-invasive motor-imagery BCI-based robotic rehabilitation for Stroke patients
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A feasibility study of non-invasive motor-imagery BCI-based robotic rehabilitation for Stroke patients

机译:基于无创运动图像BCI的中风机器人康复的可行性研究

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This paper describes an initial study of non-invasive electroencephalograph (EEG)-based Brain Computer Interface (BCI) application on Stroke patients. The purpose of this study is to combine BCI and robotic arm for after-stroke rehabilitation exercises. A clinically-proven MANUS robotic rehabilitation shell is integrated with the NeuroComm BCI platform, whereby the robotic control mechanism is complemented by the motor imagery of the patient. 8 hemiparetic stroke patients with varying degrees of paralysis on the unilateral upper extremity are recruited for this study. The results show that most BCI-naive hemiparetic stroke patients are capable of operating the BCI effectively, hence motivates further clinical studies on the extent of how BCI-based robotic rehabilitation are comparable with the control group that uses only robotic rehabilitation.
机译:本文介绍了基于非侵入性脑电图(EEG)的中风患者脑计算机接口(BCI)应用的初步研究。这项研究的目的是结合BCI和机械臂进行中风后康复锻炼。经临床验证的MANUS机器人康复外壳与NeuroComm BCI平台集成在一起,从而使机器人控制机制与患者的运动图像相辅相成。本研究招募了8例单侧上肢麻痹程度不同的偏瘫性脑卒中患者。结果表明,大多数未使用BCI的偏瘫性中风患者都能有效地操作BCI,因此激发了进一步的临床研究,说明基于BCI的机器人康复与仅使用机器人康复的对照组的可比性。

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