EEG based brain source localization comparison of sLORETA and eLORETA

Human brain generates electromagnetic signals during certain activation inside the brain. The localization of the active sources which are responsible for such activation is termed as brain source localization. This process of source estimation with the help of EEG which is also known as EEG inverse...

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Main Authors: Jatoi, Munsif Ali, Kamel, Nidal, Malik, Aamir Saeed, Faye, Ibrahima
Format: Citation Index Journal
Published: 2014
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Online Access:http://eprints.utp.edu.my/11375/1/AUSTRALASIAN%20PHYSICAL%20%26%20ENGINEERING%20SCIENCES%20IN%20MEDICINE%20-%20EEG%20Based%20Brain%20Source%20Localization%20Comparison%20of%20sLORETA%20and%20eLORETA%20-%20Paper.pdf
http://eprints.utp.edu.my/11375/
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spelling my.utp.eprints.113752015-04-28T02:54:06Z EEG based brain source localization comparison of sLORETA and eLORETA Jatoi, Munsif Ali Kamel, Nidal Malik, Aamir Saeed Faye, Ibrahima Q Science (General) T Technology (General) Human brain generates electromagnetic signals during certain activation inside the brain. The localization of the active sources which are responsible for such activation is termed as brain source localization. This process of source estimation with the help of EEG which is also known as EEG inverse problem is helpful to understand physiological, pathological, mental, functional abnormalities and cognitive behaviour of the brain. This understanding leads for the specification for diagnoses of various brain disorders such as epilepsy and tumour. Different approaches are devised to exactly localize the active sources with minimum localization error, less complexity and more validation which include minimum norm, low resolution brain electromagnetic tomography (LORETA), standardized LORETA, exact LORETA, Multiple Signal classifier, focal under determined system solution etc. This paper discusses and compares the ability of localizing the sources for two low resolution methods i.e., sLORETA and eLORETA respectively. The ERP data with visual stimulus is used for comparison at four different time instants for both methods (sLORETA and eLORETA) and then corresponding activation in terms of scalp map, slice view and cortex map is discussed. 2014-10-31 Citation Index Journal PeerReviewed application/pdf http://eprints.utp.edu.my/11375/1/AUSTRALASIAN%20PHYSICAL%20%26%20ENGINEERING%20SCIENCES%20IN%20MEDICINE%20-%20EEG%20Based%20Brain%20Source%20Localization%20Comparison%20of%20sLORETA%20and%20eLORETA%20-%20Paper.pdf Jatoi, Munsif Ali and Kamel, Nidal and Malik, Aamir Saeed and Faye, Ibrahima (2014) EEG based brain source localization comparison of sLORETA and eLORETA. [Citation Index Journal] http://eprints.utp.edu.my/11375/
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 Q Science (General)
T Technology (General)
spellingShingle Q Science (General)
T Technology (General)
Jatoi, Munsif Ali
Kamel, Nidal
Malik, Aamir Saeed
Faye, Ibrahima
EEG based brain source localization comparison of sLORETA and eLORETA
description Human brain generates electromagnetic signals during certain activation inside the brain. The localization of the active sources which are responsible for such activation is termed as brain source localization. This process of source estimation with the help of EEG which is also known as EEG inverse problem is helpful to understand physiological, pathological, mental, functional abnormalities and cognitive behaviour of the brain. This understanding leads for the specification for diagnoses of various brain disorders such as epilepsy and tumour. Different approaches are devised to exactly localize the active sources with minimum localization error, less complexity and more validation which include minimum norm, low resolution brain electromagnetic tomography (LORETA), standardized LORETA, exact LORETA, Multiple Signal classifier, focal under determined system solution etc. This paper discusses and compares the ability of localizing the sources for two low resolution methods i.e., sLORETA and eLORETA respectively. The ERP data with visual stimulus is used for comparison at four different time instants for both methods (sLORETA and eLORETA) and then corresponding activation in terms of scalp map, slice view and cortex map is discussed.
format Citation Index Journal
author Jatoi, Munsif Ali
Kamel, Nidal
Malik, Aamir Saeed
Faye, Ibrahima
author_facet Jatoi, Munsif Ali
Kamel, Nidal
Malik, Aamir Saeed
Faye, Ibrahima
author_sort Jatoi, Munsif Ali
title EEG based brain source localization comparison of sLORETA and eLORETA
title_short EEG based brain source localization comparison of sLORETA and eLORETA
title_full EEG based brain source localization comparison of sLORETA and eLORETA
title_fullStr EEG based brain source localization comparison of sLORETA and eLORETA
title_full_unstemmed EEG based brain source localization comparison of sLORETA and eLORETA
title_sort eeg based brain source localization comparison of sloreta and eloreta
publishDate 2014
url http://eprints.utp.edu.my/11375/1/AUSTRALASIAN%20PHYSICAL%20%26%20ENGINEERING%20SCIENCES%20IN%20MEDICINE%20-%20EEG%20Based%20Brain%20Source%20Localization%20Comparison%20of%20sLORETA%20and%20eLORETA%20-%20Paper.pdf
http://eprints.utp.edu.my/11375/
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