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基于时空滤波的高效 CSP 算法在运动想象分类中的应用。

Efficient CSP Algorithm With Spatio-Temporal Filtering for Motor Imagery Classification.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2020 Apr;28(4):1006-1016. doi: 10.1109/TNSRE.2020.2979464. Epub 2020 Mar 9.

Abstract

Common spatial pattern (CSP) is an efficient algorithm widely used in feature extraction of EEG-based motor imagery classification. Traditional CSP depends only on spatial filtering, that aims to maximize or minimize the ratio of variances of filtered EEG signals in different classes. Recent advances of CSP approaches show that temporal filtering is also preferable to extract discriminative features. In view of this perspective, a novel spatio-temporal filtering strategy is proposed in this paper. To improve computational efficiency and alleviate the overfitting issue frequently encountered in the case of small sample size, the same temporal filter is designed by EEG signals of the same class and shared by all the spatial channels. Spatial and temporal filters can be updated alternatively in practice. Furthermore, each of the resulting designs can still be cast as a CSP problem and tackled efficiently by the eigenvalue decomposition. To alleviate the adverse effects of outliers or noisy EEG channels, sparse spatial or temporal filters can also be achieved by incorporating an l -norm-based regularization term in our CSP problem. The regularized spatial or temporal filter design is iteratively reformulated as a CSP problem via the reweighting technique. Two sets of motor imagery EEG data of BCI competitions are used in our experiments to verify the effectiveness of the proposed algorithm.

摘要

共空间模式(CSP)是一种广泛应用于基于脑电的运动想象分类特征提取的有效算法。传统的 CSP 仅依赖于空间滤波,旨在最大化或最小化不同类别滤波 EEG 信号的方差比。CSP 方法的最新进展表明,时间滤波也有利于提取判别特征。鉴于这一观点,本文提出了一种新的时空滤波策略。为了提高计算效率并缓解小样本量情况下经常遇到的过拟合问题,通过相同类别的 EEG 信号设计相同的时间滤波器,并由所有空间通道共享。在实践中,可以交替更新空间和时间滤波器。此外,每个设计仍然可以表示为 CSP 问题,并通过特征值分解有效地解决。为了减轻离群值或噪声 EEG 通道的不利影响,还可以通过在我们的 CSP 问题中包含基于 l 范数的正则化项来实现稀疏时空滤波器。通过重新加权技术,将正则化的时空滤波器设计迭代地重新表示为 CSP 问题。我们的实验使用了两组 BCI 竞赛的运动想象 EEG 数据来验证所提出算法的有效性。

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