Bioelectric source localization in the brain is sensitive to geometry and conductivity properties of the different head tissues. We propose a method that individually optimizes a realistically-shaped volume conductor with regard to the conductivities using a simulated annealing optimizer in discrete parameter space. We show that the method is able to simultaneously reconstruct two reference sources and a reference skull:brain conductivity ratio even in the presence of realistic noise. The individually optimized head model can then be used for the analysis of clinical or cognitive data
Introduction: Electrical fields passing through the human skull are affected by its low electrical c...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
In brain imaging, the accuracy involved in calculating scalp potentials due to cerebral electric sou...
Bioelectric source localization in the brain is sensitive to geometry and conductivity properties of...
Bioelectric source analysis in the human brain from scalp electroencephalography (EEG) signals is se...
Accurate electroencephalographic (EEG) source localization requires an electrical head model incorpo...
A reliable leadfield matrix is needed to solve the magnetoencephalography/electroencephalography (M/...
International audienceThe skull conductivity strongly influences the accuracy of EEG source localiza...
One of the major issues related to electroencephalography (EEG) is to localize where in the brain si...
EEG source imaging (ESI) techniques estimate 3D brain activity based on electrical activity measured...
AbstractThe conductivity profile of the head has a major effect on EEG signals, but unfortunately th...
Electroencephalography (EEG) source imaging is an ill-posed inverse problem that requires accurate c...
The conductivity profile of the head has a major effect on EEG signals, but unfortunately the conduc...
International audienceBioelectric source analysis in the human brain from scalp electroencephalograp...
International audienceA fundamental problem in theoretical neurosciences is the inverse problem of s...
Introduction: Electrical fields passing through the human skull are affected by its low electrical c...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
In brain imaging, the accuracy involved in calculating scalp potentials due to cerebral electric sou...
Bioelectric source localization in the brain is sensitive to geometry and conductivity properties of...
Bioelectric source analysis in the human brain from scalp electroencephalography (EEG) signals is se...
Accurate electroencephalographic (EEG) source localization requires an electrical head model incorpo...
A reliable leadfield matrix is needed to solve the magnetoencephalography/electroencephalography (M/...
International audienceThe skull conductivity strongly influences the accuracy of EEG source localiza...
One of the major issues related to electroencephalography (EEG) is to localize where in the brain si...
EEG source imaging (ESI) techniques estimate 3D brain activity based on electrical activity measured...
AbstractThe conductivity profile of the head has a major effect on EEG signals, but unfortunately th...
Electroencephalography (EEG) source imaging is an ill-posed inverse problem that requires accurate c...
The conductivity profile of the head has a major effect on EEG signals, but unfortunately the conduc...
International audienceBioelectric source analysis in the human brain from scalp electroencephalograp...
International audienceA fundamental problem in theoretical neurosciences is the inverse problem of s...
Introduction: Electrical fields passing through the human skull are affected by its low electrical c...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
In brain imaging, the accuracy involved in calculating scalp potentials due to cerebral electric sou...