A direct reconstruction algorithm for complex conductivities in W-2,W-infinity(Omega), where Omega is a bounded, simply connected Lipschitz domain in R-2, is presented. The framework is based on the uniqueness proof by Francini (2000 Inverse Problems 6 107-19), but equations relating the Dirichlet-to-Neumann to the scattering transform and the exponentially growing solutions are not present in that work, and are derived here. The algorithm constitutes the first D-bar method for the reconstruction of conductivities and permittivities in two dimensions. Reconstructions of numerically simulated chest phantoms with discontinuities at the organ boundaries are included.National Institute of Biomedical Imaging and Bioengineering [R21EB009508]Natio...
A direct reconstruction algorithm based on Calderon's linearization method for the reconstruction of...
In this paper we study existence, uniqueness and solution estimates to the mixed problem r \Delta oe...
In electrical impedance tomography (EIT) one wants to image the conductivity distribution of a body ...
A direct reconstruction algorithm for complex conductivities in W-2,W-infinity(Omega), where Omega i...
A direct reconstruction algorithm for complex conductivities in W2, ∞(Ω), where Ω is a bounded, simp...
Abstract. A strategy for regularizing the inversion procedure for the two-dimensional D-bar reconstr...
Abstract. The 2D inverse conductivity problem requires one to determine the unknown electrical condu...
A direct D-bar reconstruction algorithm is presented for reconstructing a complex conductivity from ...
The inverse conductivity problem is the mathematical problem behind electrical impedance tomography ...
The effects of truncating the (approximate) scattering transform in the D-bar reconstruction method ...
Reconstructions of piecewise constant conductivities by the D-bar method for electrical impedance to...
We consider the inverse conductivity problem of how to reconstruct an isotropic electric conductivit...
A finite difference scheme is introduced to solve the D-bar equation. The D-bar equation arises in e...
Electrical impedance tomography (EIT) is a medical imaging technique in which current is applied on ...
International audienceAn electrical potential U on bordered surface X (in Euclidien three-dimensiona...
A direct reconstruction algorithm based on Calderon's linearization method for the reconstruction of...
In this paper we study existence, uniqueness and solution estimates to the mixed problem r \Delta oe...
In electrical impedance tomography (EIT) one wants to image the conductivity distribution of a body ...
A direct reconstruction algorithm for complex conductivities in W-2,W-infinity(Omega), where Omega i...
A direct reconstruction algorithm for complex conductivities in W2, ∞(Ω), where Ω is a bounded, simp...
Abstract. A strategy for regularizing the inversion procedure for the two-dimensional D-bar reconstr...
Abstract. The 2D inverse conductivity problem requires one to determine the unknown electrical condu...
A direct D-bar reconstruction algorithm is presented for reconstructing a complex conductivity from ...
The inverse conductivity problem is the mathematical problem behind electrical impedance tomography ...
The effects of truncating the (approximate) scattering transform in the D-bar reconstruction method ...
Reconstructions of piecewise constant conductivities by the D-bar method for electrical impedance to...
We consider the inverse conductivity problem of how to reconstruct an isotropic electric conductivit...
A finite difference scheme is introduced to solve the D-bar equation. The D-bar equation arises in e...
Electrical impedance tomography (EIT) is a medical imaging technique in which current is applied on ...
International audienceAn electrical potential U on bordered surface X (in Euclidien three-dimensiona...
A direct reconstruction algorithm based on Calderon's linearization method for the reconstruction of...
In this paper we study existence, uniqueness and solution estimates to the mixed problem r \Delta oe...
In electrical impedance tomography (EIT) one wants to image the conductivity distribution of a body ...