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LABOUNEK, R. LAMOŠ, M. MAREČEK, R. JAN, J.
Original Title
Analysis of connections between simultaneous EEG and fMRI data
Type
conference paper
Language
English
Original Abstract
Neurologists are looking for connections between simultaneous EEG and fMRI data, trying to take advantages of both methods. EEG gives them a very good time resolution of the neuronal activity, while a great spatial resolution is provided by the MRI scanner, when the BOLD signal is measured. The analysis of fMRI images is mostly evaluated by the computer program Statistical Parametric Mapping (SPM). The EEG regressor builder is a software which was created in this study. It loads, processes and joins together parameters of simultaneous EEG and fMRI data into the analysis of the SPM. It is intended to help neurologists to preprocess EEG signals or it can make the whole analysis automatically. The second part of the study compares results from published analyses with the results calculated by the EEG regressor builder. The processed data was measured in St. Anne's University Hospital, Brno at First Department of Neurology.
Keywords
EEG signal, fMRI imaging, general linear model, regressor, signal processing, statistical parametric mapping
Authors
LABOUNEK, R.; LAMOŠ, M.; MAREČEK, R.; JAN, J.
RIV year
2012
Released
11. 4. 2012
Location
Vienna, Austria
ISBN
978-3-200-02588-2
Book
Proceedings of 19th International Conference on Systems, Signals and Image Processing (IEEE - IWSSIP 2012)
Pages from
594
Pages to
597
Pages count
4
URL
http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=6208307&tag=1
BibTex
@inproceedings{BUT91681, author="René {Labounek} and Martin {Lamoš} and Radek {Mareček} and Jiří {Jan}", title="Analysis of connections between simultaneous EEG and fMRI data", booktitle="Proceedings of 19th International Conference on Systems, Signals and Image Processing (IEEE - IWSSIP 2012)", year="2012", pages="594--597", address="Vienna, Austria", isbn="978-3-200-02588-2", url="http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=6208307&tag=1" }