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Source Localization for EEG/MEG Stavroula Kousta Martin Chadwick Methods for Dummies 2007
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Source Localization: The Question Is it possible to find the locus of electrical activity in the brain based upon the map of recorded electrical activity? EEGMEG
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Forward Solution Model Head Brain Skull Scalp -4 μV -5 μV Model Data 0 μV -1 μV -2 μV -3 μV 1 μV 2 μV 3 μV 4 μV 5 μV + Location Orientation Amplitude
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Inverse problem -5 μV -4 μV Recorded Data 0 μV -1 μV -2 μV -3 μV 1 μV 2 μV 3 μV 4 μV 5 μV Desired Model Solution Brain Skull Scalp ? ? ?? ? ILL-DEFINED!!!
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+ -
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+ -
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+ - + - Any field potential vector could be consistent with an infinite number of possible dipoles
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Specify initial dipole parameters in head model Generate scalp potentials/fields using forward solution (V model ) Calculate SSE Σ (V model –V data ) 2 Δ SSE<ε Accept dipole parameters Adjust Parameters YesYes No Inverse Solution Slotnick, 2005
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Source Model Initial Parameters ‘Imaging’ ‘Equivalent Current Dipoles’ (ECD)
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Head Model Spherical Head Model
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Head Model 3-spheres Head Model* * Rush & Driscoll, IEEE-TBME, 1969
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Head Model Realistic Geometry Head Model* * He et al., IEEE-TBME, 1987
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Head Model 3-shell BEM RG Head Model* * Hamalainen & Sarvas, IEEE-TBME, 1989
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Head Model FEM RG Head Model* * Yan et al. Med. & Biol. Eng. & Compt. 1991
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Forward Solution Source Model (e.g. ECD) + Head Model (e.g. boundary-element): V = C V + G
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Inverse Solution Model fitting –Minimize the sum of squares error between the data and the model by adjusting model parameters (dipole location, orientation, magnitude, time-course). Parameter fitting routines –Levenberg_Marquardt method (Marquardt, 1963) –Simplex method (Nelder and Mead, 1965) –Simulated annealing (Kirkpatrick, 1984) –Genetic algorithms (McNay et al., 1996)
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EEG & MEG Source Localisation: The Buttons
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Components of the source reconstruction process Source/Head Model Forward model Inverse solution Registration
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1) Source/Head Model Select data file Select title for the analysis Select “MRI”
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‘Imaging’ ‘Equivalent Current Dipoles’ (ECD) Select the size of your head model Select the relevant source model
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Head Model
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2) Registration This stage co-registers the EEG sensory positions with the head model Approximately matches anatomical markers between the two spaces Followed by a more accurate surface-matching routine.
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3) The Forward Model Select “Forward Model” This will now create a forward model based on the specifications of your source model and your head model.
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Important! Source model Forward model Inverse solution Registra tion The same for all conditions. Therefore, only done ONCE for each subject Repeated for each condition
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4) The Inverse Solution
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The 3D reconstruction is now complete, and you are ready to perform you statistical analyses.
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Sources Cuffin (1998) http://ieeexplore.ieee.org/iel4/51/15468/00715495.pdf http://ieeexplore.ieee.org/iel4/51/15468/00715495.pdf Slotnick, D. (2005). In T.C. Handy (Ed.), Event-related potentials: A methods handbook. MIT Press. Mattout, Phillips & Friston (2005) SPM course http://www.fil.ion.ucl.ac.uk/spm/course/slides05/ppt/MEE G_inv.ppt Bahador Bahrami (2006) http://www.fil.ion.ucl.ac.uk/~mgray/Presentations/Source %20localization%20for%20EEG%20and%20MEG.ppt
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