Literature DB >> 3274959

Methods for separating temporally overlapping sources of neuroelectric data.

A Achim1, F Richer, J M Saint-Hilaire.   

Abstract

The localization of intracranial sources of EEG or MEG signals can be misled by the combined effect of several sources, as illustrated by simulated MEG data in which two of the three dipolar sources have slightly out of phase activity and partly complementary scalp topographies. These data were analysed by three different source localization methods. Fitting a single source to each sequential topography worked perfectly when only one source was active; this could also account for as much as 95% of the spatial variance of topographies resulting from two overlapping sources, although the solution was then far from any source. A principal component analysis approach followed by an oblique rotation (fitting one source to the spatial aspect of each component) correctly localized two of the sources but severely mislocated the source that was never active alone. Spatio-temporal source modeling (simultaneously fitting a set of sources to all consecutive topographies) correctly localized all three sources, provided that the parameter optimization method could escape sub-optimal local minima of the error function. Temporally overlapping sources can thus be separated and correctly identified if the mathematical model is adequate and the optimization procedure is well adapted.

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Year:  1988        PMID: 3274959     DOI: 10.1007/bf01129336

Source DB:  PubMed          Journal:  Brain Topogr        ISSN: 0896-0267            Impact factor:   3.020


  7 in total

1.  Two bilateral sources of the late AEP as identified by a spatio-temporal dipole model.

Authors:  M Scherg; D Von Cramon
Journal:  Electroencephalogr Clin Neurophysiol       Date:  1985-01

2.  Evoked dipole source potentials of the human auditory cortex.

Authors:  M Scherg; D Von Cramon
Journal:  Electroencephalogr Clin Neurophysiol       Date:  1986-09

3.  Principal components analysis for source localization of VEPs in man.

Authors:  J Maier; G Dagnelie; H Spekreijse; B W van Dijk
Journal:  Vision Res       Date:  1987       Impact factor: 1.886

4.  Scalp distribution of human auditory evoked potentials. II. Evidence for overlapping sources and involvement of auditory cortex.

Authors:  C C Wood; J R Wolpaw
Journal:  Electroencephalogr Clin Neurophysiol       Date:  1982-07

5.  Spatio-temporal modelling of early auditory evoked potentials.

Authors:  M Scherg
Journal:  Rev Laryngol Otol Rhinol (Bord)       Date:  1984

6.  Application of dipole localization methods to source identification of human evoked potentials.

Authors:  C C Wood
Journal:  Ann N Y Acad Sci       Date:  1982       Impact factor: 5.691

7.  Neuronal generators and the problem of localization in electroencephalography: application of volume conductor theory to electroencephalography.

Authors:  P Gloor
Journal:  J Clin Neurophysiol       Date:  1985-10       Impact factor: 2.177

  7 in total
  12 in total

1.  Removal of interference from fetal MEG by frequency dependent subtraction.

Authors:  J Vrba; J McCubbin; R B Govindan; S Vairavan; P Murphy; H Preissl; C L Lowery; H Eswaran
Journal:  Neuroimage       Date:  2011-09-10       Impact factor: 6.556

2.  Cortical sources of event-related potentials in the prosaccade and antisaccade task.

Authors:  John E Richards
Journal:  Psychophysiology       Date:  2003-11       Impact factor: 4.016

3.  Functional imaging and localization of electromagnetic brain activity.

Authors:  M Scherg
Journal:  Brain Topogr       Date:  1992       Impact factor: 3.020

4.  Use of prior knowledge in brain electromagnetic source analysis.

Authors:  M Scherg; P Berg
Journal:  Brain Topogr       Date:  1991       Impact factor: 3.020

5.  The usefulness of the Laplacian in principal component analysis and dipole source localization.

Authors:  S A Klein; T Carney
Journal:  Brain Topogr       Date:  1995       Impact factor: 3.020

6.  Quantitative analysis of epileptic discharges.

Authors:  P K Wong
Journal:  Brain Topogr       Date:  1996       Impact factor: 3.020

7.  STL: a spatio-temporal characterization of focal interictal events.

Authors:  A B Barreto; J C Principe; S A Reid
Journal:  Brain Topogr       Date:  1993       Impact factor: 3.020

8.  Models of brain sources.

Authors:  M Scherg; J S Ebersole
Journal:  Brain Topogr       Date:  1993       Impact factor: 3.020

9.  Source analysis of median nerve and finger stimulated somatosensory evoked potentials: multichannel simultaneous recording of electric and magnetic fields combined with 3D-MR tomography.

Authors:  H Buchner; M Fuchs; H A Wischmann; O Dössel; I Ludwig; A Knepper; P Berg
Journal:  Brain Topogr       Date:  1994       Impact factor: 3.020

Review 10.  Source modelling of the rolandic focus.

Authors:  P K Wong
Journal:  Brain Topogr       Date:  1991       Impact factor: 3.020

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