Introduction:Electrical impedance tomography (EIT) is a non-invasivetechnique that can be used to estimate the scalp and skull conductivityvalues. These values are required for modelling transcranial electricalstimulation (TES) to estimate the current density dose on the brain. Wepreviously found individual EIT estimates for four subjects using detailedhead models [1]. The question we address here is: what?s the impact in TESof using individual EIT estimates versus typical literature values?Methods:Usingfinite element simulations, we computed the maximumpossible TES dose for each element of the grey matter (GM) along itsnormal-to-cortex orientation, assuming afixed current budget of 1mA.Optimal current injection patterns where obtained usin...
Transcranial electric stimulation aims to stimulate the brain by applying weak electrical currents a...
Summarization: Skull conductivity has a substantial influence on EEG and combined EEG and MEG source...
International audienceThe skull conductivity strongly influences the accuracy of EEG source localiza...
Transcranial current stimulation (tCS) is a non-invasive brain stimulation technique based ...
Objective: To estimate the scalp, skull, compact bone and marrow bone electrical conductivity values...
We study the theoretical performance of using Electrical Impedance Tomography (EIT) to measure the c...
Objective: To estimate scalp, skull, compact bone, and marrow bone electrical conductivity values ba...
The scalp and skull conductivities (σsc, σsk respectively) are determined from Electrical Impedance ...
Objective: To estimate scalp, skull, compact bone, and marrow bone electrical conductivity values ba...
Electroencephalography (EEG) benefits from accurate head models. Dipole source modelling errors can ...
Objective: Electrical impedance tomography (EIT) has been proposed as a novel tool for diagnosing st...
Electromagnetic source characterisation requires accurate volume conductor models representing head ...
Electrical Impedance Tomography (EIT) is a non-invasive method that aims to create an electrical con...
Electrical Impedance Tomography (EIT ) is a noninvasive method used to estimate the conductivity of ...
Electrical neuroimaging is a contemporary functional imaging method that evolves electroencephalogra...
Transcranial electric stimulation aims to stimulate the brain by applying weak electrical currents a...
Summarization: Skull conductivity has a substantial influence on EEG and combined EEG and MEG source...
International audienceThe skull conductivity strongly influences the accuracy of EEG source localiza...
Transcranial current stimulation (tCS) is a non-invasive brain stimulation technique based ...
Objective: To estimate the scalp, skull, compact bone and marrow bone electrical conductivity values...
We study the theoretical performance of using Electrical Impedance Tomography (EIT) to measure the c...
Objective: To estimate scalp, skull, compact bone, and marrow bone electrical conductivity values ba...
The scalp and skull conductivities (σsc, σsk respectively) are determined from Electrical Impedance ...
Objective: To estimate scalp, skull, compact bone, and marrow bone electrical conductivity values ba...
Electroencephalography (EEG) benefits from accurate head models. Dipole source modelling errors can ...
Objective: Electrical impedance tomography (EIT) has been proposed as a novel tool for diagnosing st...
Electromagnetic source characterisation requires accurate volume conductor models representing head ...
Electrical Impedance Tomography (EIT) is a non-invasive method that aims to create an electrical con...
Electrical Impedance Tomography (EIT ) is a noninvasive method used to estimate the conductivity of ...
Electrical neuroimaging is a contemporary functional imaging method that evolves electroencephalogra...
Transcranial electric stimulation aims to stimulate the brain by applying weak electrical currents a...
Summarization: Skull conductivity has a substantial influence on EEG and combined EEG and MEG source...
International audienceThe skull conductivity strongly influences the accuracy of EEG source localiza...