首页> 外文会议>Advanced Engineering Computing and Applications in Sciences, 2009. ADVCOMP '09 >An Algorithm for Brain Computer Interfacing Based on Phase Synchronization Spatial Patterns
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An Algorithm for Brain Computer Interfacing Based on Phase Synchronization Spatial Patterns

机译:基于相位同步空间模式的脑计算机接口算法

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Brain computer interfacing (BCI) is an interdisciplinary area that connects biomedical knowledge on brain physiology with the use of effective computational techniques for mental task discrimination. One of the most successful algorithms in BCI is the method of common spatial patterns (CSP). The spatial filters computed using this method are based on a joint diagonalization of the covariance matrices of two classes of data. However, in the standard CSP implementation the influence of amplitude and phase characteristics are not distinguished. In order to investigate phase synchronization links for the scope of task discrimination, we propose a variant of the method of CSP that depends explicitly on phase synchronization information. The phase-based CSP (P-CSP) was tested on simulated data to analyze if the implemented method yields significant patterns of phase interaction. The algorithm was also used on real EEG data for the classification of two motor imagery tasks and results were compared to those obtained using the phase locking value (PLV). The results obtained indicate that using the method of P-CSP with a few spatial filters can yield classification rates close to or exceeding the best classification rate obtained from the PLV measures for any pair of channels.
机译:脑计算机接口(BCI)是一个跨学科领域,它将关于脑生理的生物医学知识与有效的计算技术相结合,以进行心理任务区分。 BCI中最成功的算法之一是通用空间模式(CSP)。使用此方法计算的空间滤波器基于两类数据的协方差矩阵的联合对角化。但是,在标准CSP实施中,无法区分幅度和相位特性的影响。为了研究任务区分范围内的相位同步链接,我们提出了CSP方法的一种变体,该方法明确依赖于相位同步信息。在模拟数据上测试了基于相位的CSP(P-CSP),以分析所实施的方法是否产生了显着的相位相互作用模式。该算法还用于实际的EEG数据,以对两个运动图像任务进行分类,并将结果与​​使用锁相值(PLV)获得的结果进行比较。所获得的结果表明,使用带有少量空间滤波器的P-CSP方法可以产生接近或超过从任何一对通道的PLV测量获得的最佳分类率的分类率。

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