Structural Stability of Flat Electroencephalography

Flat Electroencephalography is a way of viewing electroencephalography signals on the first component of Fuzzy Topograhic Topological Mapping (FTTM), a model which was designed to solve neuromagnetic inverse problem. This novel method is well known for its ability to preserves the orientation and ma...

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Hlavní autoři: Tan, Lit Ken, Tahir, Ahmad
Médium: Článek
Jazyk:English
Vydáno: Zhengzhou University, Marsland Press 2014
Témata:
On-line přístup:http://umpir.ump.edu.my/id/eprint/5913/1/Structural_Stability_of_Flat_Electroencephalography.pdf
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author Tan, Lit Ken
Tahir, Ahmad
author_facet Tan, Lit Ken
Tahir, Ahmad
author_sort Tan, Lit Ken
collection UMP
description Flat Electroencephalography is a way of viewing electroencephalography signals on the first component of Fuzzy Topograhic Topological Mapping (FTTM), a model which was designed to solve neuromagnetic inverse problem. This novel method is well known for its ability to preserves the orientation and magnitude of EEG sensors and signals. However, this preservation renders Flat EEG to contain unwanted signals captured during recording from the surroundings. Consequently, its accuracy in depicting actual electrical activity inside the brain is affected. Present of artifacts would pose a serious problem if it is large. Thusly, this study will investigate the persistence of Flat EEG to surrounding “noises” from dynamic viewpoint by means of structural stability. Basically, it will be showed that Flat EEG in the presence of “noises” may still reflects the actual electrical activity inside the brain, if the contaminated Flat EEG falls within a class of dynamical systems.
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spelling UMPir59132015-03-03T09:27:11Z http://umpir.ump.edu.my/id/eprint/5913/ Structural Stability of Flat Electroencephalography Tan, Lit Ken Tahir, Ahmad R Medicine (General) RC0321 Neuroscience. Biological psychiatry. Neuropsychiatry QA Mathematics Flat Electroencephalography is a way of viewing electroencephalography signals on the first component of Fuzzy Topograhic Topological Mapping (FTTM), a model which was designed to solve neuromagnetic inverse problem. This novel method is well known for its ability to preserves the orientation and magnitude of EEG sensors and signals. However, this preservation renders Flat EEG to contain unwanted signals captured during recording from the surroundings. Consequently, its accuracy in depicting actual electrical activity inside the brain is affected. Present of artifacts would pose a serious problem if it is large. Thusly, this study will investigate the persistence of Flat EEG to surrounding “noises” from dynamic viewpoint by means of structural stability. Basically, it will be showed that Flat EEG in the presence of “noises” may still reflects the actual electrical activity inside the brain, if the contaminated Flat EEG falls within a class of dynamical systems. Zhengzhou University, Marsland Press 2014-04-26 Article PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/5913/1/Structural_Stability_of_Flat_Electroencephalography.pdf Tan, Lit Ken and Tahir, Ahmad (2014) Structural Stability of Flat Electroencephalography. Life Science Journal, 11 (8). pp. 165-170. ISSN 1097-8135. (Published) http://www.lifesciencesite.com/lsj/life1108/
spellingShingle R Medicine (General)
RC0321 Neuroscience. Biological psychiatry. Neuropsychiatry
QA Mathematics
Tan, Lit Ken
Tahir, Ahmad
Structural Stability of Flat Electroencephalography
title Structural Stability of Flat Electroencephalography
title_full Structural Stability of Flat Electroencephalography
title_fullStr Structural Stability of Flat Electroencephalography
title_full_unstemmed Structural Stability of Flat Electroencephalography
title_short Structural Stability of Flat Electroencephalography
title_sort structural stability of flat electroencephalography
topic R Medicine (General)
RC0321 Neuroscience. Biological psychiatry. Neuropsychiatry
QA Mathematics
url http://umpir.ump.edu.my/id/eprint/5913/1/Structural_Stability_of_Flat_Electroencephalography.pdf
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