Title :
Coherent source and connectivity analysis on simultaneously measured EEG and MEG data during isometric contraction
Author :
Muthuraman, Muthuraman ; Hellriegel, H. ; Hoogenboom, N. ; Anwar, Abdul Rauf ; Mideksa, K.G. ; Krause, H. ; Schnitzler, A. ; Raethjen, J. ; Deuschl, Guunther
Author_Institution :
Dept. of Neurology, Christian Albrecht´s Univ., Kiel, Germany
Abstract :
The most well-known non-invasive electric and magnetic field measurement modalities are the electroencephalography (EEG) and magnetoencephalography (MEG). The first aim of the study was to implement the recently developed realistic head model which uses an integrative approach for both the modalities. The second aim of this study was to find the network of coherent sources and the modes of interactions within this network during isometric contraction (ISC) at (15-30 Hz) in healthy subjects. The third aim was to test the effective connectivity revealed by both the modalities analyzing them separately and combined. The Welch periodogram method was used to estimate the coherence spectrum between the EEG and the electromyography (EMG) signals followed by the realistic head modelling and source analysis method dynamic imaging of coherent sources (DICS) to find the network of coherent sources at the individual peak frequency within the beta band in healthy subjects. The last step was to identify the effective connectivity between the identified sources using the renormalized partial directed coherence method. The cortical and sub-cortical network comprised of the primary sensory motor cortex (PSMC), secondary motor area (SMA), and the cerebellum (C). The cortical and sub-cortical network responsible for the isometric contraction was similar in both the modalities when analysing them separately and combined. The SNR was not significantly different between the two modalities separately and combined. However, the coherence values were significantly higher in the combined modality in comparison to each of the modality separately. The effective connectivity analysis revealed plausible additional connections in the combined modality analysis.
Keywords :
biomechanics; electroencephalography; electromyography; magnetoencephalography; medical signal processing; neurophysiology; physiological models; spectral analysis; DICS; EEG data; EMG; ISC; MEG data; PSMC; SMA; SNR; Welch periodogram method; beta band; cerebellum; coherence spectrum; coherence values; coherent source network; combined modality analysis; dynamic imaging of coherent sources; effective connectivity analysis; electroencephalography; electromyography signals; frequency 15 Hz to 30 Hz; individual peak frequency; interaction modes; isometric contraction; magnetic field measurement modalities; magnetoencephalography; noninvasive electric field measurement modalities; primary sensory motor cortex; realistic head modelling; renormalized partial directed coherence method; secondary motor area; source analysis method; subcortical network; Brain modeling; Coherence; Electrodes; Electroencephalography; Electromyography; Head; Magnetic heads;
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2014 36th Annual International Conference of the IEEE
Conference_Location :
Chicago, IL
DOI :
10.1109/EMBC.2014.6945084