Bioelectric source analysis in the human brain from scalp electroencephalography (EEG) signals is sensitive to geometry and conductivity properties of the different head tissues. We propose a low-resolution conductivity estimation (LRCE) method using simulated annealing optimization on high-resolution finite element models that individually optimizes a realistically shaped four-layer volume conductor with regard to the brain and skull compartment conductivities. As input data, the method needs T1- and PD-weighted magnetic resonance images for an improved modeling of the skull and the cerebrospinal fluid compartment and evoked potential data with high signal-to-noise ratio (SNR). Our simulation studies showed that for EEG data with realistic...
The conductivity profile of the head has a major effect on EEG signals, but unfortunately the conduc...
In order to reconstruct the underlying active neural sources of epileptic spiking activity measured ...
Monitoring the electrical activity inside the human brain using electrical and magnetic field measur...
Bioelectric source analysis in the human brain from scalp electroencephalography (EEG) signals is se...
Bioelectric source localization in the brain is sensitive to geometry and conductivity properties of...
We used computer simulations to investigate finite element models of the layered structure of the hu...
International audienceThe skull conductivity strongly influences the accuracy of EEG source localiza...
Accurate electroencephalographic (EEG) source localization requires an electrical head model incorpo...
Bioelectric source analysis in the human brain from scalp electroencephalography (EEG) signals is se...
To increase the reliability for the non-invasive determination of the irritative zone in presurgical...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
Brain source imaging is a sophisticated method for estimating the location of active brain tissues a...
We study the theoretical performance of using Electrical Impedance Tomography (EIT) to measure the c...
AbstractThe conductivity profile of the head has a major effect on EEG signals, but unfortunately th...
Electroencephalography (EEG) benefits from accurate head models. Dipole source modelling errors can ...
The conductivity profile of the head has a major effect on EEG signals, but unfortunately the conduc...
In order to reconstruct the underlying active neural sources of epileptic spiking activity measured ...
Monitoring the electrical activity inside the human brain using electrical and magnetic field measur...
Bioelectric source analysis in the human brain from scalp electroencephalography (EEG) signals is se...
Bioelectric source localization in the brain is sensitive to geometry and conductivity properties of...
We used computer simulations to investigate finite element models of the layered structure of the hu...
International audienceThe skull conductivity strongly influences the accuracy of EEG source localiza...
Accurate electroencephalographic (EEG) source localization requires an electrical head model incorpo...
Bioelectric source analysis in the human brain from scalp electroencephalography (EEG) signals is se...
To increase the reliability for the non-invasive determination of the irritative zone in presurgical...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
Brain source imaging is a sophisticated method for estimating the location of active brain tissues a...
We study the theoretical performance of using Electrical Impedance Tomography (EIT) to measure the c...
AbstractThe conductivity profile of the head has a major effect on EEG signals, but unfortunately th...
Electroencephalography (EEG) benefits from accurate head models. Dipole source modelling errors can ...
The conductivity profile of the head has a major effect on EEG signals, but unfortunately the conduc...
In order to reconstruct the underlying active neural sources of epileptic spiking activity measured ...
Monitoring the electrical activity inside the human brain using electrical and magnetic field measur...