peer reviewedAccurate electromagnetic modeling of the head of a subject is of main interest in the fields of source reconstruction and brain stimulation. Those processes rely heavily on the quality of the model and, even though the geometry of the tissues can be extracted from magnetic resonance images (MRI) or computed tomography (CT), their physical properties such as the electrical conductivity are difficult to measure with non intrusive techniques. In this paper, we propose a tool to assess the uncertainty in the model parameters, the tissue conductivity, as well as compute a parametric forward models for electroencephalography (EEG) and transcranial direct current stimulation (tDCS) current distribution
International audienceThe skull conductivity strongly influences the accuracy of EEG source localiza...
Transcranial electric stimulation aims to stimulate the brain by applying weak electrical currents a...
Uncertainty surrounding ohmic tissue conductivity impedes accurate calculation of the electric field...
Accurate electromagnetic modelling of the head of a subject is of main interest in the fields of sou...
peer reviewedWe introduce a Python 3 package: “shamo”. It can perform mesh generation, electromagn...
Transcranial current stimulation (tCS) is a non-invasive brain stimulation technique based ...
The electroencephalogram (EEG) is a measurement of neuronal activity inside the brain over a period ...
Transcranial direct current stimulation (tDCS) is a non-invasive and sub-convulsive functional stimu...
Electromagnetic source characterisation requires accurate volume conductor models representing head ...
Uncertainty surrounding ohmic tissue conductivity impedes accurate calculation of the electric field...
Monitoring the electrical activity inside the human brain using electrical and magnetic field measur...
Source localization by electroencephalography (EEG) requires an accurate model of head geometry and ...
In brain imaging, the accuracy involved in calculating scalp potentials due to cerebral electric sou...
Brain source imaging is a sophisticated method for estimating the location of active brain tissues a...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
International audienceThe skull conductivity strongly influences the accuracy of EEG source localiza...
Transcranial electric stimulation aims to stimulate the brain by applying weak electrical currents a...
Uncertainty surrounding ohmic tissue conductivity impedes accurate calculation of the electric field...
Accurate electromagnetic modelling of the head of a subject is of main interest in the fields of sou...
peer reviewedWe introduce a Python 3 package: “shamo”. It can perform mesh generation, electromagn...
Transcranial current stimulation (tCS) is a non-invasive brain stimulation technique based ...
The electroencephalogram (EEG) is a measurement of neuronal activity inside the brain over a period ...
Transcranial direct current stimulation (tDCS) is a non-invasive and sub-convulsive functional stimu...
Electromagnetic source characterisation requires accurate volume conductor models representing head ...
Uncertainty surrounding ohmic tissue conductivity impedes accurate calculation of the electric field...
Monitoring the electrical activity inside the human brain using electrical and magnetic field measur...
Source localization by electroencephalography (EEG) requires an accurate model of head geometry and ...
In brain imaging, the accuracy involved in calculating scalp potentials due to cerebral electric sou...
Brain source imaging is a sophisticated method for estimating the location of active brain tissues a...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
International audienceThe skull conductivity strongly influences the accuracy of EEG source localiza...
Transcranial electric stimulation aims to stimulate the brain by applying weak electrical currents a...
Uncertainty surrounding ohmic tissue conductivity impedes accurate calculation of the electric field...