Spatial interaction of electroencephalography signal during epileptic seizure on flat electroencephalography

Electroencephalography (EEG) is one of the fields in clinical neurophysiology, which is a recording of the electrical activity of the brain from the scalp. One of the major roles of EEG is as an aid to diagnose epilepsy. Abnormal patterns such as spikes, sharp waves and, spikes and wave complexes ca...

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Main Authors: Goh, Chien Yong, Ahmad, Tahir, Maan, Normah
Format: Article
Published: 2013
Subjects:
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author Goh, Chien Yong
Ahmad, Tahir
Maan, Normah
author_facet Goh, Chien Yong
Ahmad, Tahir
Maan, Normah
author_sort Goh, Chien Yong
collection ePrints
description Electroencephalography (EEG) is one of the fields in clinical neurophysiology, which is a recording of the electrical activity of the brain from the scalp. One of the major roles of EEG is as an aid to diagnose epilepsy. Abnormal patterns such as spikes, sharp waves and, spikes and wave complexes can be seen. It is important to extract spatial information about the dynamics from a few observations of this recorded signal regardless where EEG sensors are located. A developed method by Theoretical & Computational Modelling for Complex System (TCM), UTM, namely Flat EEG for mapping high dimensional signal into a low dimensional space will be used as platforms to analyse EEG signal spatially during epileptic seizure. The spatial interactions among clusters are identified through spatial interaction model, namely gravity model. This paper also reveals that gravity model used is a measure.
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spelling utm.eprints-408952017-08-20T00:31:47Z http://eprints.utm.my/40895/ Spatial interaction of electroencephalography signal during epileptic seizure on flat electroencephalography Goh, Chien Yong Ahmad, Tahir Maan, Normah Q Science Electroencephalography (EEG) is one of the fields in clinical neurophysiology, which is a recording of the electrical activity of the brain from the scalp. One of the major roles of EEG is as an aid to diagnose epilepsy. Abnormal patterns such as spikes, sharp waves and, spikes and wave complexes can be seen. It is important to extract spatial information about the dynamics from a few observations of this recorded signal regardless where EEG sensors are located. A developed method by Theoretical & Computational Modelling for Complex System (TCM), UTM, namely Flat EEG for mapping high dimensional signal into a low dimensional space will be used as platforms to analyse EEG signal spatially during epileptic seizure. The spatial interactions among clusters are identified through spatial interaction model, namely gravity model. This paper also reveals that gravity model used is a measure. 2013 Article PeerReviewed Goh, Chien Yong and Ahmad, Tahir and Maan, Normah (2013) Spatial interaction of electroencephalography signal during epileptic seizure on flat electroencephalography. Malaysian Journal of Fundamental and Applied Sciences, 9 (4). pp. 210-214. ISSN 1823-626X
spellingShingle Q Science
Goh, Chien Yong
Ahmad, Tahir
Maan, Normah
Spatial interaction of electroencephalography signal during epileptic seizure on flat electroencephalography
title Spatial interaction of electroencephalography signal during epileptic seizure on flat electroencephalography
title_full Spatial interaction of electroencephalography signal during epileptic seizure on flat electroencephalography
title_fullStr Spatial interaction of electroencephalography signal during epileptic seizure on flat electroencephalography
title_full_unstemmed Spatial interaction of electroencephalography signal during epileptic seizure on flat electroencephalography
title_short Spatial interaction of electroencephalography signal during epileptic seizure on flat electroencephalography
title_sort spatial interaction of electroencephalography signal during epileptic seizure on flat electroencephalography
topic Q Science
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AT ahmadtahir spatialinteractionofelectroencephalographysignalduringepilepticseizureonflatelectroencephalography
AT maannormah spatialinteractionofelectroencephalographysignalduringepilepticseizureonflatelectroencephalography