Optimal spatial filtering of single trial EEG during imagined hand movement

H Ramoser, J Muller-Gerking…�- IEEE transactions on�…, 2000 - ieeexplore.ieee.org
H Ramoser, J Muller-Gerking, G Pfurtscheller
IEEE transactions on rehabilitation engineering, 2000ieeexplore.ieee.org
The development of an electroencephalograph (EEG)-based brain-computer interface (BCI)
requires rapid and reliable discrimination of EEG patterns, eg, associated with imaginary
movement. One-sided hand movement imagination results in EEG changes located at
contra-and ipsilateral central areas. The authors 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�…
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. The authors 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.
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