The distinguishability of a discrete coil induced current electrical impedance tomography system is analysed. The solution methodology of the forward problem of this system is explained. An optimization procedure using this forward problem solution is developed to find optimum currents that maximize the distinguishability. For the concentric inhomogeneity problem, it is shown that the coil currents can be optimized to focus the current density in any desired location, in the field of view. Optimum coil currents under the constraints of limited peak coil currents and limited total power are determined. Examples that demonstrate the performance of the system are presented
Electrical Impedance Tomography (EIT) is non-invasive technique that has the potential to be used in...
Several noninvasive modalities including electrical impedance tomography (EIT), magnetic induction t...
In 2D EIT imaging, the internal distribution of the injected currents generate a magnetic field in t...
Abstract- Distinguishability of a discrete coil induced current electrical impedance tomography syst...
A discrete coil EIT system is investigated for the general case of an eccentric circular inhomogenei...
The problem of finding the optimum current under different constraints in electrical impedance tomog...
The mathematical basis of a new imaging modality, Induced Current Electrical Impedance Tomography (E...
An experimental study of induced-current electrical impedance tomography verifies that image quality...
A two-dimensional forward problem formulation is introduced for electrical impedance tomography (EIT...
Electrical impedance tomography (EIT) has to be improved in order to become an accepted diagnostic t...
In Electrical Impedance Tomography (EIT), the internal conductivity map of a volume is investigated ...
In magnetic resonance-electrical impedance tomography, magnetic flux density due to current injectio...
Electrical Impedance Tomography (EIT) images internal objects within a body. Electrodes are attached...
Electrical Impedance Tomography (EIT) is a simple solution for obtaining information about the inter...
International audienceIn the field of electrical impedance tomography (EIT), numerous studies have a...
Electrical Impedance Tomography (EIT) is non-invasive technique that has the potential to be used in...
Several noninvasive modalities including electrical impedance tomography (EIT), magnetic induction t...
In 2D EIT imaging, the internal distribution of the injected currents generate a magnetic field in t...
Abstract- Distinguishability of a discrete coil induced current electrical impedance tomography syst...
A discrete coil EIT system is investigated for the general case of an eccentric circular inhomogenei...
The problem of finding the optimum current under different constraints in electrical impedance tomog...
The mathematical basis of a new imaging modality, Induced Current Electrical Impedance Tomography (E...
An experimental study of induced-current electrical impedance tomography verifies that image quality...
A two-dimensional forward problem formulation is introduced for electrical impedance tomography (EIT...
Electrical impedance tomography (EIT) has to be improved in order to become an accepted diagnostic t...
In Electrical Impedance Tomography (EIT), the internal conductivity map of a volume is investigated ...
In magnetic resonance-electrical impedance tomography, magnetic flux density due to current injectio...
Electrical Impedance Tomography (EIT) images internal objects within a body. Electrodes are attached...
Electrical Impedance Tomography (EIT) is a simple solution for obtaining information about the inter...
International audienceIn the field of electrical impedance tomography (EIT), numerous studies have a...
Electrical Impedance Tomography (EIT) is non-invasive technique that has the potential to be used in...
Several noninvasive modalities including electrical impedance tomography (EIT), magnetic induction t...
In 2D EIT imaging, the internal distribution of the injected currents generate a magnetic field in t...