Literature DB >> 19003489

An empirical EEG analysis in brain death diagnosis for adults.

Zhe Chen1, Jianting Cao, Yang Cao, Yue Zhang, Fanji Gu, Guoxian Zhu, Zhen Hong, Bin Wang, Andrzej Cichocki.   

Abstract

Electroencephalogram (EEG) is often used in the confirmatory test for brain death diagnosis in clinical practice. Because EEG recording and monitoring is relatively safe for the patients in deep coma, it is believed to be valuable for either reducing the risk of brain death diagnosis (while comparing other tests such as the apnea) or preventing mistaken diagnosis. The objective of this paper is to study several statistical methods for quantitative EEG analysis in order to help bedside or ambulatory monitoring or diagnosis. We apply signal processing and quantitative statistical analysis for the EEG recordings of 32 adult patients. For EEG signal processing, independent component analysis (ICA) was applied to separate the independent source components, followed by Fourier and time-frequency analysis. For quantitative EEG analysis, we apply several statistical complexity measures to the EEG signals and evaluate the differences between two groups of patients: the subjects in deep coma, and the subjects who were categorized as brain death. We report statistically significant differences of quantitative statistics with real-life EEG recordings in such a clinical study, and we also present interpretation and discussions on the preliminary experimental results.

Entities:  

Year:  2008        PMID: 19003489      PMCID: PMC2518749          DOI: 10.1007/s11571-008-9047-z

Source DB:  PubMed          Journal:  Cogn Neurodyn        ISSN: 1871-4080            Impact factor:   5.082


  22 in total

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Journal:  Phys Rev A Gen Phys       Date:  1987-07-15

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Review 7.  Determining brain death in adults.

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Journal:  Cogn Neurodyn       Date:  2007-08-28       Impact factor: 5.082

9.  Entropy is more resistant to artifacts than bispectral index in brain-dead organ donors.

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  10 in total

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5.  Power spectral density and coherence analysis of Alzheimer's EEG.

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7.  Predictive modeling of human operator cognitive state via sparse and robust support vector machines.

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8.  Classifying human operator functional state based on electrophysiological and performance measures and fuzzy clustering method.

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9.  Selecting EEG components using time series analysis in brain death diagnosis.

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Journal:  Cogn Neurodyn       Date:  2011-05-13       Impact factor: 5.082

10.  Analyzing EEG of quasi-brain-death based on dynamic sample entropy measures.

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Journal:  Comput Math Methods Med       Date:  2013-12-22       Impact factor: 2.238

  10 in total

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