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Regularizing Common Spatial Patterns to Improve BCI Designs: Unified Theory and New Algorithms

IEEE Transactions on Biomedical Engineering · 2010 · Vol. 58(2) · pp. 355–362
Fabien LotteCuntai Guan

Abstract

One of the most popular feature extraction algorithms for brain-computer interfaces (BCI) is common spatial patterns (CSPs). Despite its known efficiency and widespread use, CSP is also known to be very sensitive to noise and prone to overfitting. To address this issue, it has been recently proposed to regularize CSP. In this paper, we present a simple and unifying theoretical framework to design such a regularized CSP (RCSP). We then present a review of existing RCSP algorithms and describe how to cast them in this framework. We also propose four new RCSP algorithms. Finally, we compare the performances of 11 different RCSP (including the four new ones and the original CSP), on electroencephalography data from 17 subjects, from BCI competition datasets. Results showed that the best RCSP methods can outperform CSP by nearly 10% in median classification accuracy and lead to more neurophysiologically relevant spatial filters. They also enable us to perform efficient subject-to-subject transfer. Overall, the best RCSP algorithms were CSP with Tikhonov regularization and weighted Tikhonov regularization, both proposed in this paper.

EEG and Brain-Computer InterfacesBlind Source Separation TechniquesNeural dynamics and brain functionOverfittingTikhonov regularizationComputer scienceAlgorithmBrain–computer interfaceRegularization (linguistics)Feature extractionArtificial intelligencePattern recognition (psychology)Machine learning

MeSH terms

AlgorithmsElectroencephalographyHumansMan-Machine SystemsModels, NeurologicalPattern Recognition, AutomatedRegression AnalysisSignal Processing, Computer-AssistedUser-Computer Interface
Citations
1,037
FWCI
13.24
field-weighted impact
References
39
Percentile
99%
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Cited by
Review of the BCI Competition IV
Frontiers in Neuroscience · 2012 · 1,168 citations
References
Motor imagery and direct brain-computer communication
Proceedings of the IEEE · 2001 · 1,907 citations
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Regularizing Common Spatial Patterns to Improve BCI Designs: Unified Theory and New Algorithms · Scinovex