The low-conducting human skull is known to have an especially large influence on electroencephalography (EEG) source analysis. Because of difficulties segmenting the complex skull geometry out of magnetic resonance images, volume conductor models for EEG source analysis might contain inaccuracies and simplifications regarding the geometry of the skull. The computer simulation study presented here investigated the influences of a variety of skull geometry deficiencies on EEG forward simulations and source reconstruction from EEG data. Reference EEG data was simulated in a detailed and anatomically plausible reference model. Test models were derived from the reference model representing a variety of skull geometry inaccuracies and simplificat...
We investigated the influence of different skull modeling approaches on EEG source imaging (ESI), us...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
The results of brain connectivity analysis using reconstructed source time courses derived from EEG ...
The low-conducting human skull is known to have an especially large influence on electroencephalogra...
We investigated the influence of using simplified skull models on electroencephalogram (EEG) source ...
We used computer simulations to investigate finite element models of the layered structure of the hu...
Electroencephalographic source localization (ESL) relies on an accurate model representing the human...
Quantitative experimental evidence for the influence of skull defects on the MEG is rare. This study...
We investigated the influence of using simplified models of the skull on electroencephalogram (EEG) ...
PURPOSE: Electroencephalogram (EEG) source analysis is a noninvasive technique used in the presurgic...
Electroencephalographic source localization (ESL) is a highly valuable tool in the presurgical evalu...
Volume conductor models that are commonly used to describe the EEG and MEG neglect holes in the skul...
Magnetic resonance imaging (MRI) provides the means for the generation of head models with a high ge...
We investigated the effect of omitting the air cavities of the skull due to using a simplified model...
Magnetoencephalography (MEG) signals are influenced by skull defects. However, there is a lack of ev...
We investigated the influence of different skull modeling approaches on EEG source imaging (ESI), us...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
The results of brain connectivity analysis using reconstructed source time courses derived from EEG ...
The low-conducting human skull is known to have an especially large influence on electroencephalogra...
We investigated the influence of using simplified skull models on electroencephalogram (EEG) source ...
We used computer simulations to investigate finite element models of the layered structure of the hu...
Electroencephalographic source localization (ESL) relies on an accurate model representing the human...
Quantitative experimental evidence for the influence of skull defects on the MEG is rare. This study...
We investigated the influence of using simplified models of the skull on electroencephalogram (EEG) ...
PURPOSE: Electroencephalogram (EEG) source analysis is a noninvasive technique used in the presurgic...
Electroencephalographic source localization (ESL) is a highly valuable tool in the presurgical evalu...
Volume conductor models that are commonly used to describe the EEG and MEG neglect holes in the skul...
Magnetic resonance imaging (MRI) provides the means for the generation of head models with a high ge...
We investigated the effect of omitting the air cavities of the skull due to using a simplified model...
Magnetoencephalography (MEG) signals are influenced by skull defects. However, there is a lack of ev...
We investigated the influence of different skull modeling approaches on EEG source imaging (ESI), us...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
The results of brain connectivity analysis using reconstructed source time courses derived from EEG ...