An instrumental electrode model (IEM) capable of describing the performance of electrical impedance tomography (EIT) systems in the MHz frequency range has been proposed. Compared with the commonly used Complete Electrode Model (CEM), which assumes ideal front-end interfaces, the proposed model considers the effects of non-ideal components in the front-end circuits. This introduces an extra boundary condition in the forward model and offers a more accurate modelling for EIT systems. We have demonstrated its performance using simple geometry structures and compared the results with the CEM and full Maxwell methods. The IEM can provide a significantly more accurate approximation than the CEM in the MHz frequency range, where the full Maxwell ...
Electrical Impedance Tomography (EIT) is a nonlinear ill posed inverse problem which is very prone t...
Electrical Impedance Tomography (EIT) is a nonlinear ill posed inverse problem which is very prone t...
In this thesis, we study from a theoretical and a numerical point of view the Electrical Impedance T...
An instrumental electrode model (IEM) capable of describing the performance of electrical impedance ...
An instrumental electrode model (IEM) capable of describing the performance of electrical impedance ...
The thesis discusses various electrode models and finite element analysis methods for Electrical Imp...
16-electrode phantoms are developed and studied with a simple instrumentation developed for Electric...
16-electrode phantoms are developed and studied with a simple instrumentation developed for Electric...
AbstractElectrical impedance tomography is a noninvasive imaging technique based on measurements of ...
In this thesis three main issues are addressed: noise performance, electrode misplacement, and image...
A Finite Element Method based forward solver is developed for solving the forward problem of a 2D-El...
Traditionally, image reconstruction in electrical impedance tomography (EIT) has been based on Lapla...
AbstractElectrical impedance tomography is a noninvasive imaging technique based on measurements of ...
This study discusses a nonlinear electrical impedance tomography (EIT) technique under different ana...
Copyright © 2012- Navid Bahrani Electrical Impedance Tomography (EIT) is a medical imaging technique...
Electrical Impedance Tomography (EIT) is a nonlinear ill posed inverse problem which is very prone t...
Electrical Impedance Tomography (EIT) is a nonlinear ill posed inverse problem which is very prone t...
In this thesis, we study from a theoretical and a numerical point of view the Electrical Impedance T...
An instrumental electrode model (IEM) capable of describing the performance of electrical impedance ...
An instrumental electrode model (IEM) capable of describing the performance of electrical impedance ...
The thesis discusses various electrode models and finite element analysis methods for Electrical Imp...
16-electrode phantoms are developed and studied with a simple instrumentation developed for Electric...
16-electrode phantoms are developed and studied with a simple instrumentation developed for Electric...
AbstractElectrical impedance tomography is a noninvasive imaging technique based on measurements of ...
In this thesis three main issues are addressed: noise performance, electrode misplacement, and image...
A Finite Element Method based forward solver is developed for solving the forward problem of a 2D-El...
Traditionally, image reconstruction in electrical impedance tomography (EIT) has been based on Lapla...
AbstractElectrical impedance tomography is a noninvasive imaging technique based on measurements of ...
This study discusses a nonlinear electrical impedance tomography (EIT) technique under different ana...
Copyright © 2012- Navid Bahrani Electrical Impedance Tomography (EIT) is a medical imaging technique...
Electrical Impedance Tomography (EIT) is a nonlinear ill posed inverse problem which is very prone t...
Electrical Impedance Tomography (EIT) is a nonlinear ill posed inverse problem which is very prone t...
In this thesis, we study from a theoretical and a numerical point of view the Electrical Impedance T...