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首页> 外文期刊>IEEE transactions on rehabilitation engineering >Real-time EEG analysis with subject-specific spatial patterns for a brain-computer interface (BCI)
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Real-time EEG analysis with subject-specific spatial patterns for a brain-computer interface (BCI)

机译:针对脑机接口(BCI)的具有特定对象空间模式的实时EEG分析

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Electroencephalogram (EEG) recordings during right and left motor imagery allow one to establish a new communication channel for, e.g., patients with amyotrophic lateral sclerosis. Such an EEG-based brain-computer interface (BCI) can be used to develop a simple binary response for the control of a device. Three subjects participated in a series of on-line sessions to test if it is possible to use common spatial patterns to analyze EEG in real time in order to give feedback to the subjects. Furthermore, the classification accuracy that can be achieved after only three days of training was investigated. The patterns are estimated from a set of multichannel EEG data by the method of common spatial patterns and reflect the specific activation of cortical areas. By construction, common spatial patterns weight each electrode according to its importance to the discrimination task and suppress noise in individual channels by using correlations between neighboring electrodes. Experiments with three subjects resulted in an error rate of 2, 6 and 14% during on-line discrimination of left- and right-hand motor imagery after three days of training and make common spatial patterns a promising method for an EEG-based brain-computer interface.
机译:左右运动图像期间的脑电图(EEG)记录使人们能够为例如肌萎缩性侧索硬化症患者建立新的沟通渠道。这样的基于EEG的脑计算机接口(BCI)可用于开发简单的二进制响应来控制设备。三名受试者参加了一系列的在线会议,以测试是否可以使用常见的空间模式实时分析脑电图,以便向受试者提供反馈。此外,研究了仅经过三天的培训即可达到的分类精度。通过通用空间模式的方法从一组多通道EEG数据中估计模式,并反映皮层区域的特定激活。通过构造,公共空间图案根据其对判别任务的重要性对每个电极加权,并通过使用相邻电极之间的相关性来抑制各个通道中的噪声。经过三天的训练,经过三天的实验,在线辨别左右手运动图像时的错误率分别为2%,6%和14%,并使常见的空间模式成为基于EEG的脑电图的有前途的方法计算机界面。

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