ESTIMATION OF VISUAL EVOKED POTENTIALS FOR MEASUREMENT OF OPTICAL PATHWAY CONDUCTION

A time domain constrained subspace-based estimator for extracting a visual evoked potential (VEP) from a highly noisy brain activity is proposed. Generally, the desired VEP is corrupted by background electroencephalogram (EEG) behaving as colored noise, making the overall signal-to-noise ratio as...

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Main Author: Nidal S., Kamel
Format: Conference or Workshop Item
Published: 2009
Subjects:
Online Access:http://eprints.utp.edu.my/5067/1/EUSIPCO_2009.pdf
http://www.eusipco2009.org/papers/1569187003.pdf.
http://eprints.utp.edu.my/5067/
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spelling my.utp.eprints.50672017-01-19T08:25:15Z ESTIMATION OF VISUAL EVOKED POTENTIALS FOR MEASUREMENT OF OPTICAL PATHWAY CONDUCTION Nidal S., Kamel TK Electrical engineering. Electronics Nuclear engineering A time domain constrained subspace-based estimator for extracting a visual evoked potential (VEP) from a highly noisy brain activity is proposed. Generally, the desired VEP is corrupted by background electroencephalogram (EEG) behaving as colored noise, making the overall signal-to-noise ratio as low as -10 dB. The estimator is designed to minimize signal distortion, while keeping residual noise below a specified threshold. Also, the algorithm applies a Karhunen-Loeve transform to decorrelate the corrupted VEP signal and decompose it into two parts called signal and noise subspace. Before an inverse Karhunen-Loeve transform is applied, the noise only subspace is discarded. VEP enhancement is therefore achieved by estimating the desired VEP only from the signal subspace. The performance of the filter to detect the latencies of P100's is comprehensively assessed using realistically simulated VEP and EEG data. Later, the effectiveness and validity of the algorithm are evaluated using real patient data recorded in a clinical environment. The results from both experiments show that the estimator generates reasonably low errors and high success rate. 2009-08-24 Conference or Workshop Item PeerReviewed application/pdf http://eprints.utp.edu.my/5067/1/EUSIPCO_2009.pdf http://www.eusipco2009.org/papers/1569187003.pdf. Nidal S., Kamel (2009) ESTIMATION OF VISUAL EVOKED POTENTIALS FOR MEASUREMENT OF OPTICAL PATHWAY CONDUCTION. In: 17th European Signal Processing Conference (EUSIPCO 2009), August 24-28, 2009, Glasgow, Scotland, . http://eprints.utp.edu.my/5067/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Nidal S., Kamel
ESTIMATION OF VISUAL EVOKED POTENTIALS FOR MEASUREMENT OF OPTICAL PATHWAY CONDUCTION
description A time domain constrained subspace-based estimator for extracting a visual evoked potential (VEP) from a highly noisy brain activity is proposed. Generally, the desired VEP is corrupted by background electroencephalogram (EEG) behaving as colored noise, making the overall signal-to-noise ratio as low as -10 dB. The estimator is designed to minimize signal distortion, while keeping residual noise below a specified threshold. Also, the algorithm applies a Karhunen-Loeve transform to decorrelate the corrupted VEP signal and decompose it into two parts called signal and noise subspace. Before an inverse Karhunen-Loeve transform is applied, the noise only subspace is discarded. VEP enhancement is therefore achieved by estimating the desired VEP only from the signal subspace. The performance of the filter to detect the latencies of P100's is comprehensively assessed using realistically simulated VEP and EEG data. Later, the effectiveness and validity of the algorithm are evaluated using real patient data recorded in a clinical environment. The results from both experiments show that the estimator generates reasonably low errors and high success rate.
format Conference or Workshop Item
author Nidal S., Kamel
author_facet Nidal S., Kamel
author_sort Nidal S., Kamel
title ESTIMATION OF VISUAL EVOKED POTENTIALS FOR MEASUREMENT OF OPTICAL PATHWAY CONDUCTION
title_short ESTIMATION OF VISUAL EVOKED POTENTIALS FOR MEASUREMENT OF OPTICAL PATHWAY CONDUCTION
title_full ESTIMATION OF VISUAL EVOKED POTENTIALS FOR MEASUREMENT OF OPTICAL PATHWAY CONDUCTION
title_fullStr ESTIMATION OF VISUAL EVOKED POTENTIALS FOR MEASUREMENT OF OPTICAL PATHWAY CONDUCTION
title_full_unstemmed ESTIMATION OF VISUAL EVOKED POTENTIALS FOR MEASUREMENT OF OPTICAL PATHWAY CONDUCTION
title_sort estimation of visual evoked potentials for measurement of optical pathway conduction
publishDate 2009
url http://eprints.utp.edu.my/5067/1/EUSIPCO_2009.pdf
http://www.eusipco2009.org/papers/1569187003.pdf.
http://eprints.utp.edu.my/5067/
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