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想象手部运动期间单次试验脑电图的最佳空间滤波

Optimal spatial filtering of single trial EEG during imagined hand movement.

作者信息

Ramoser H, Müller-Gerking J, Pfurtscheller G

机构信息

Department of Medical Informatics, Institute of Biomedical Engineering, Graz University of Technology, Austria.

出版信息

IEEE Trans Rehabil Eng. 2000 Dec;8(4):441-6. doi: 10.1109/86.895946.

Abstract

The development of an electroencephalograph (EEG)-based brain-computer interface (BCI) requires rapid and reliable discrimination of EEG patterns, e.g., associated with imaginary movement. One-sided hand movement imagination results in EEG changes located at contra- and ipsilateral central areas. We demonstrate that spatial filters for multichannel EEG effectively extract discriminatory information from two populations of single-trial EEG, recorded during left- and right-hand movement imagery. The best classification results for three subjects are 90.8%, 92.7%, and 99.7%. The spatial filters are estimated from a set of data by the method of common spatial patterns and reflect the specific activation of cortical areas. The method performs a weighting of the electrodes according to their importance for the classification task. The high recognition rates and computational simplicity make it a promising method for an EEG-based brain-computer interface.

摘要

基于脑电图(EEG)的脑机接口(BCI)的发展需要快速且可靠地区分EEG模式,例如与想象运动相关的模式。单侧手部运动想象会导致EEG变化出现在对侧和同侧的中央区域。我们证明,用于多通道EEG的空间滤波器能有效地从左手和右手运动想象期间记录的两组单次试验EEG中提取判别信息。三名受试者的最佳分类结果分别为90.8%、92.7%和99.7%。空间滤波器通过共同空间模式方法从一组数据中估计得出,反映了皮质区域的特定激活情况。该方法根据电极对分类任务的重要性对其进行加权。高识别率和计算简便性使其成为基于EEG的脑机接口的一种有前景的方法。

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