Electromagnetic fields provide fundamental data for the imaging of electrical tissue properties, such as conductivity and permittivity, in recent magnetic resonance (MR)-based tissue property mapping. The induced voltage, current density, and magnetic flux density caused by externally injected current are critical factors for determining the image quality of electrical tissue conductivity. As a useful tool to identify bio-electromagnetic phenomena, precise approaches are required to understand the exact responses inside the human body subject to an injected currents. In this study, we provide the numerical simulation results of electromagnetic field mapping of brain tissues using a MR-based conductivity imaging method. First, we implemented...
Abstract—We investigate the effect of tissue heterogeneity and anisotropy on the electric field and ...
Magnetic resonance imaging (MRI) is an established, non-invasive biomedical imaging method used for ...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
The inverse problem in Electro- and Magneto-EncephaloGraphy (EEG/MEG) aims at reconstructing the und...
The inverse problem in Electro- and Magneto-EncephaloGraphy (EEG/MEG) aims at reconstructing the und...
Purpose To realistically map the electric fields of biological tissues using a diffusion tensor magn...
Monitoring the electrical activity inside the human brain using electrical and magnetic field measur...
To achieve a deeper understanding of the brain, scientists, and clinicians use electroencephalograph...
To achieve a deeper understanding of the brain, scientists and clinicians use Elec-troencephalograph...
Magnetic resonance imaging (MRI) is an established, non-invasive biomedical imaging method used for ...
The aim was to quantify the influence of heterogeneous isotropic and heterogeneous anisotropic tissu...
Accurate simulations on detailed realistic head models are necessary to gain a better understanding ...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
The aim was to quantify the influence of heterogeneous isotropic and heterogeneous anisotropic tissu...
Anisotropic electrical properties can be found in biological tissues such as muscles and nerves. Con...
Abstract—We investigate the effect of tissue heterogeneity and anisotropy on the electric field and ...
Magnetic resonance imaging (MRI) is an established, non-invasive biomedical imaging method used for ...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
The inverse problem in Electro- and Magneto-EncephaloGraphy (EEG/MEG) aims at reconstructing the und...
The inverse problem in Electro- and Magneto-EncephaloGraphy (EEG/MEG) aims at reconstructing the und...
Purpose To realistically map the electric fields of biological tissues using a diffusion tensor magn...
Monitoring the electrical activity inside the human brain using electrical and magnetic field measur...
To achieve a deeper understanding of the brain, scientists, and clinicians use electroencephalograph...
To achieve a deeper understanding of the brain, scientists and clinicians use Elec-troencephalograph...
Magnetic resonance imaging (MRI) is an established, non-invasive biomedical imaging method used for ...
The aim was to quantify the influence of heterogeneous isotropic and heterogeneous anisotropic tissu...
Accurate simulations on detailed realistic head models are necessary to gain a better understanding ...
The function and structure of the human brain is immensely complex and, at the same time, the key to...
The aim was to quantify the influence of heterogeneous isotropic and heterogeneous anisotropic tissu...
Anisotropic electrical properties can be found in biological tissues such as muscles and nerves. Con...
Abstract—We investigate the effect of tissue heterogeneity and anisotropy on the electric field and ...
Magnetic resonance imaging (MRI) is an established, non-invasive biomedical imaging method used for ...
The function and structure of the human brain is immensely complex and, at the same time, the key to...