International audienceCognitive functions involve not only cortical but also subcortical structures. Subcortical sources, however, contribute very little to magnetoencephalographic (MEG) and electroencephalographic (EEG) signals because they are far from external sensors and their neural architectonic organization often makes them electromagnetically silent. Estimating the activity of deep sources from MEG and EEG (M/EEG) data is thus a challenging issue. Here, we review the influence of geometric parameters (location/orientation) on M/EEG signals produced by the main deep brain structures (amygdalo-hippocampal complex, thalamus and some basal ganglia). We then discuss several methods that have been utilized to solve the issues and localize...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...
This thesis aims at advancing the development of forward and inverse modeling techniques to solve th...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...
Cognitive functions involve not only cortical but also subcortical structures. Subcortical sources, ...
International audienceSubcortical structures are involved in many healthy and pathological brain pro...
Subcortical structures are involved in many healthy and pathological brain processes. It is crucial ...
Subcortical structures play a critical role in brain function. However, options for assessing electr...
The prevailing view on the dynamics of large-scale electrical activity in the human cortex is that i...
International audienceDetermining the anatomical source of brain activity non-invasively measured fr...
International audienceMagnetoencephalography (MEG) is a noninvasive technique for exploring the spat...
A window to the working brain. The communication between neurons in the brain occurs through the tra...
To what extent electrocorticography (ECoG) and electroencephalography (scalp EEG) differ in their ca...
The conventional beamformers that reconstruct the cerebral origin of brain activity measured outside...
Electroencephalography (EEG) and magnetoencephalography (MEG) are among the most important technique...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Brain and Cognitive Sciences, 2...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...
This thesis aims at advancing the development of forward and inverse modeling techniques to solve th...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...
Cognitive functions involve not only cortical but also subcortical structures. Subcortical sources, ...
International audienceSubcortical structures are involved in many healthy and pathological brain pro...
Subcortical structures are involved in many healthy and pathological brain processes. It is crucial ...
Subcortical structures play a critical role in brain function. However, options for assessing electr...
The prevailing view on the dynamics of large-scale electrical activity in the human cortex is that i...
International audienceDetermining the anatomical source of brain activity non-invasively measured fr...
International audienceMagnetoencephalography (MEG) is a noninvasive technique for exploring the spat...
A window to the working brain. The communication between neurons in the brain occurs through the tra...
To what extent electrocorticography (ECoG) and electroencephalography (scalp EEG) differ in their ca...
The conventional beamformers that reconstruct the cerebral origin of brain activity measured outside...
Electroencephalography (EEG) and magnetoencephalography (MEG) are among the most important technique...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Brain and Cognitive Sciences, 2...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...
This thesis aims at advancing the development of forward and inverse modeling techniques to solve th...
Neural source localization techniques based on electroencephalography (EEG) use scalp potential data...