Neural network classification of spatio-temporal EEG readiness potentials

The detection of spatio-temporal scalp EEG patterns associated with voluntary motion preparation towards the development of a brain-computer interface (BCI) is explored. The rationale for the use of a spatio-temporal approach to this detection problem is explained. The need for a temporal or dynamic...

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Published in1996 15th Southern Biomedical Engineering Conference pp. 73 - 76
Main Authors Barreto, A.B., Taberner, A.M., Vicente, L.M.
Format Conference Proceeding
LanguageEnglish
Published IEEE 1996
Subjects
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ISBN9780780331310
0780331311
DOI10.1109/SBEC.1996.493116

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Abstract The detection of spatio-temporal scalp EEG patterns associated with voluntary motion preparation towards the development of a brain-computer interface (BCI) is explored. The rationale for the use of a spatio-temporal approach to this detection problem is explained. The need for a temporal or dynamic classifier is confirmed by demonstration of the lack of robustness in static neural network classifiers with respect to time alignment of the patterns under analysis. The results from dynamic classifiers, such as the Time Delay Neural Network (TDNN) and the Gamma Neural Network are presented in terms of their Receiver Operating Characteristic (ROC) Curves.
AbstractList The detection of spatio-temporal scalp EEG patterns associated with voluntary motion preparation towards the development of a brain-computer interface (BCI) is explored. The rationale for the use of a spatio-temporal approach to this detection problem is explained. The need for a temporal or dynamic classifier is confirmed by demonstration of the lack of robustness in static neural network classifiers with respect to time alignment of the patterns under analysis. The results from dynamic classifiers, such as the Time Delay Neural Network (TDNN) and the Gamma Neural Network are presented in terms of their Receiver Operating Characteristic (ROC) Curves.
Author Taberner, A.M.
Vicente, L.M.
Barreto, A.B.
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Snippet The detection of spatio-temporal scalp EEG patterns associated with voluntary motion preparation towards the development of a brain-computer interface (BCI) is...
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StartPage 73
SubjectTerms Biological neural networks
Brain computer interfaces
Computer interfaces
Digital signal processing
Electroencephalography
Eyes
Motion detection
Neural networks
Rhythm
Scalp
Title Neural network classification of spatio-temporal EEG readiness potentials
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