This paper investigates finite element method-based modeling in the context of neonatal electroencephalography (EEG). In particular, the focus lies on electrode boundary conditions. We compare the complete electrode model (CEM) with the point electrode model (PEM), which is the current standard in EEG. In the CEM, the voltage experienced by an electrode is modeled more realistically as the integral average of the potential distribution over its contact surface, whereas the PEM relies on a point value. Consequently, the CEM takes into account the subelectrode shunting currents, which are absent in the PEM. In this study, we aim to find out how the electrode voltage predicted by these two models differ, if standard size electrodes are attache...
International audienceThe accurate simulation of the electric fields evoked by neural activity is cr...
This study presents a whole-head finite element model of deep brain stimulation to examine the effec...
Abstract In electroencephalography (EEG) a valid conductor model of the head (forward model) is nece...
A mathematical model for the forward problem in electroencephalographic (EEG) source localization in...
International audienceObjective.Neonatal electroencephalography (EEG) source localization is highly ...
The potential improvements in spatial resolution of neonatal EEG used in source localization have be...
International audienceIn this study, we investigated the impact of uncertainty in head tissue conduc...
There is an increasing demand for source analysis of neonatal EEG, but currently there is inadequate...
There is an increased need to better understand the relation between brain structures and functions ...
We investigate the localization of the normal and pathological sources of electric cerebral activity...
In infants, the fontanels and sutures as well as conductivity of the skull influence the volume curr...
International audienceThe accuracy of electroencephalogram (EEG) source localization is compromised ...
Significant research has been conducted in recent years to design low-cost alternatives to the curre...
We analyze the effect of electrode mislocation on the electroencephalography (EEG) inverse problem u...
Developing a realistic volume conductor head model is an important step towards a non-invasive inves...
International audienceThe accurate simulation of the electric fields evoked by neural activity is cr...
This study presents a whole-head finite element model of deep brain stimulation to examine the effec...
Abstract In electroencephalography (EEG) a valid conductor model of the head (forward model) is nece...
A mathematical model for the forward problem in electroencephalographic (EEG) source localization in...
International audienceObjective.Neonatal electroencephalography (EEG) source localization is highly ...
The potential improvements in spatial resolution of neonatal EEG used in source localization have be...
International audienceIn this study, we investigated the impact of uncertainty in head tissue conduc...
There is an increasing demand for source analysis of neonatal EEG, but currently there is inadequate...
There is an increased need to better understand the relation between brain structures and functions ...
We investigate the localization of the normal and pathological sources of electric cerebral activity...
In infants, the fontanels and sutures as well as conductivity of the skull influence the volume curr...
International audienceThe accuracy of electroencephalogram (EEG) source localization is compromised ...
Significant research has been conducted in recent years to design low-cost alternatives to the curre...
We analyze the effect of electrode mislocation on the electroencephalography (EEG) inverse problem u...
Developing a realistic volume conductor head model is an important step towards a non-invasive inves...
International audienceThe accurate simulation of the electric fields evoked by neural activity is cr...
This study presents a whole-head finite element model of deep brain stimulation to examine the effec...
Abstract In electroencephalography (EEG) a valid conductor model of the head (forward model) is nece...