Objective: To estimate scalp, skull, compact bone, and marrow bone electrical conductivity values based on electrical impedance tomography (EIT) measurements, and to determine the influence of skull modeling details on the estimates. Methods: We collected EIT data with 62 current injection pairs and built five 6–8 million finite element (FE) head models with different grades of skull simplifications for four subjects, including three whose head models serve as Atlases in the scientific literature and in commercial equipment (Colin27 and EGI’s Geosource atlases). We estimated electrical conductivity of the scalp, skull, marrow bone, and compact bone tissues for each current injection pair, each model, and each subject. Results: Closure of sk...
Les problèmes inverses de localisation de sources en électroencéphalographie (EEG) consistent à retr...
Summarization: Skull conductivity has a substantial influence on EEG and combined EEG and MEG source...
In the most head modeling, the skull tissues are considered either homogeneous, inhomogeneous or an...
Objective: To estimate the scalp, skull, compact bone and marrow bone electrical conductivity values...
Objective: To estimate scalp, skull, compact bone, and marrow bone electrical conductivity values ba...
We study the theoretical performance of using Electrical Impedance Tomography (EIT) to measure the c...
The scalp and skull conductivities (σsc, σsk respectively) are determined from Electrical Impedance ...
Electroencephalography (EEG) benefits from accurate head models. Dipole source modelling errors can ...
Transcranial current stimulation (tCS) is a non-invasive brain stimulation technique based ...
Electromagnetic source characterisation requires accurate volume conductor models representing head ...
Introduction:Electrical impedance tomography (EIT) is a non-invasivetechnique that can be used to es...
Electrical Impedance Tomography (EIT) is a non-invasive method that aims to create an electrical con...
Objectives: The accuracy of electrical impedance tomography was investigated. - Methods: The conduct...
International audienceThe skull conductivity strongly influences the accuracy of EEG source localiza...
One of the major issues related to electroencephalography (EEG) is to localize where in the brain si...
Les problèmes inverses de localisation de sources en électroencéphalographie (EEG) consistent à retr...
Summarization: Skull conductivity has a substantial influence on EEG and combined EEG and MEG source...
In the most head modeling, the skull tissues are considered either homogeneous, inhomogeneous or an...
Objective: To estimate the scalp, skull, compact bone and marrow bone electrical conductivity values...
Objective: To estimate scalp, skull, compact bone, and marrow bone electrical conductivity values ba...
We study the theoretical performance of using Electrical Impedance Tomography (EIT) to measure the c...
The scalp and skull conductivities (σsc, σsk respectively) are determined from Electrical Impedance ...
Electroencephalography (EEG) benefits from accurate head models. Dipole source modelling errors can ...
Transcranial current stimulation (tCS) is a non-invasive brain stimulation technique based ...
Electromagnetic source characterisation requires accurate volume conductor models representing head ...
Introduction:Electrical impedance tomography (EIT) is a non-invasivetechnique that can be used to es...
Electrical Impedance Tomography (EIT) is a non-invasive method that aims to create an electrical con...
Objectives: The accuracy of electrical impedance tomography was investigated. - Methods: The conduct...
International audienceThe skull conductivity strongly influences the accuracy of EEG source localiza...
One of the major issues related to electroencephalography (EEG) is to localize where in the brain si...
Les problèmes inverses de localisation de sources en électroencéphalographie (EEG) consistent à retr...
Summarization: Skull conductivity has a substantial influence on EEG and combined EEG and MEG source...
In the most head modeling, the skull tissues are considered either homogeneous, inhomogeneous or an...