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Feature Extraction of Event-Related Potentials Using Wavelets: An Application to Human Performance MonitoringThis report describes the development and evaluation of mathematical models for predicting human performance from discrete wavelet transforms (DWT) of event-related potentials (ERP) elicited by task-relevant stimuli. The DWT was compared to principal components analysis (PCA) for representation of ERPs in linear regression and neural network models developed to predict a composite measure of human signal detection performance. Linear regression models based on coefficients of the decimated DWT predicted signal detection performance with half as many f ree parameters as comparable models based on PCA scores. In addition, the DWT-based models were more resistant to model degradation due to over-fitting than PCA-based models. Feed-forward neural networks were trained using the backpropagation,-, algorithm to predict signal detection performance based on raw ERPs, PCA scores, or high-power coefficients of the DWT. Neural networks based on high-power DWT coefficients trained with fewer iterations, generalized to new data better, and were more resistant to overfitting than networks based on raw ERPs. Networks based on PCA scores did not generalize to new data as well as either the DWT network or the raw ERP network. The results show that wavelet expansions represent the ERP efficiently and extract behaviorally important features for use in linear regression or neural network models of human performance. The efficiency of the DWT is discussed in terms of its decorrelation and energy compaction properties. In addition, the DWT models provided evidence that a pattern of low-frequency activity (1 to 3.5 Hz) occurring at specific times and scalp locations is a reliable correlate of human signal detection performance.
Document ID
20020062997
Acquisition Source
Ames Research Center
Document Type
Preprint (Draft being sent to journal)
Authors
Trejo, Leonard J.
(NASA Ames Research Center Moffett Field, CA United States)
Shensa, Mark J.
(Naval Command, Control and Ocean Surveillance Center San Diego, CA United States)
Remington, Roger W.
Date Acquired
September 7, 2013
Publication Date
January 1, 1998
Subject Category
Numerical Analysis
Funding Number(s)
CONTRACT_GRANT: PE-60115N
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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