DocumentCode :
953156
Title :
The Effect of Connectivity on EEG Rhythms, Power Spectral Density and Coherence Among Coupled Neural Populations: Analysis With a Neural Mass Model
Author :
Zavaglia, Melissa ; Astolfi, Laura ; Babiloni, Fabio ; Ursino, Mauro
Author_Institution :
Univ. of Bologna, Bologna
Volume :
55
Issue :
1
fYear :
2008
Firstpage :
69
Lastpage :
77
Abstract :
In the present work, a neural mass model consisting of four interconnected neural groups (pyramidal neurons, excitatory interneurons, inhibitory interneurons with slow synaptic kinetics, and inhibitory interneurons with fast synaptic kinetics) is used to investigate the mechanisms which cause the appearance of multiple rhythms in EEG spectra, and to assess how these rhythms can be affected by connectivity among different populations. In particular, we analyze a circuit, composed of three interconnected populations, each with a different synaptic kinetics (hence, with a different intrinsic rhythm). Results demonstrate that a single population can exhibit many different simultaneous rhythms, provided that some of these come from external sources (for instance, from remote regions). Analysis of coherence, and of the position of peaks in power spectral density, reveals important information on the possible connections among populations, especially useful to follow temporal changes in connectivity. Subsequently, the model is validated by comparing the power spectral density simulated in one population with that computed in the controlateral cingulated cortex (a region involved in motion preparation) during a right foot movement task in four normal subjects. The model is able to simulate real spectra quite well with only moderate parameter changes within the subject. In perspective, the results may be of value for a deeper comprehension of mechanism causing EEGs rhythms, for the study of brain connectivity and for the test of neurophysiological hypotheses.
Keywords :
bioelectric potentials; biomechanics; electroencephalography; neural nets; neurophysiology; spectral analysis; EEG rhythms; brain connectivity; circuit analysis; coherence analysis; controlateral cingulated cortex; coupled neural populations; excitatory interneurons; foot movement task; inhibitory interneurons; neural mass model; neurophysiological hypothesis testing; normal subjects; power spectral density; pyramidal neurons; synaptic kinetics; Brain modeling; Circuit analysis; Coherence; Computational modeling; Coupled mode analysis; Electroencephalography; Integrated circuit interconnections; Kinetic theory; Neurons; Rhythm; Brain connectivity; EEG rhythms; high resolution EEG; high-resolution EEG; neural mass models; Action Potentials; Biological Clocks; Brain; Computer Simulation; Electroencephalography; Humans; Models, Neurological; Nerve Net; Neural Pathways; Synaptic Transmission;
fLanguage :
English
Journal_Title :
Biomedical Engineering, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9294
Type :
jour
DOI :
10.1109/TBME.2007.897814
Filename :
4360032
Link To Document :
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