We treat an inverse electrical conductivity problem which deals with the reconstruction of nonlinear electrical conductivity starting from boundary measurements in steady currents operations. In this framework, a key role is played by the Monotonicity Principle, which establishes a monotonic relation connecting the unknown material property to the (measured) Dirichlet-to-Neumann operator (DtN). Monotonicity Principles are the foundation for a class of non-iterative and real-time imaging methods and algorithms. In this article, we prove that the monotonicity principle for the Dirichlet Energy in nonlinear problems holds under mild assumptions. Then, we show that apart from linear and p-Laplacian cases, it is impossible to transfer this monot...
In acousto-electric tomography, the objective is to extract information about the interior electrica...
Electrical impedance tomography aims at reconstructing the interior electrical conductivity from sur...
This talk is devoted to the Electromagnetic Imaging of materials. Electromagnetic Imaging of materia...
We treat an inverse electrical conductivity problem which deals with the reconstruction of nonlinear...
The inverse problem dealt with in this article consists of reconstructing the electrical conductivit...
The monotonicity-based approach has become one of the fundamental methods for reconstructing inclusi...
19 pagesInternational audienceThe monotonicity-based approach has become one of the fundamental meth...
In eddy current tomography, the conductivity profile of conductive materials is reconstructed throug...
In eddy current tomography the conductivity profile of conductive materials is reconstructed through...
This paper is focused on the non-iterative (direct) imaging of conductive materials from magnetic in...
The inverse problem treated in this article consists in reconstructing the electrical conductivity f...
We consider inverse problems for p-Laplace type equa-tions under monotonicity assumptions. In two di...
The aim of hybrid inverse problems such as Acousto-Electric Tomography or Current Density Imaging is...
Electrical capacitance tomography (ECT) is concerned with the reconstruction of spatial permittivity...
In acousto-electric tomography, the objective is to extract information about the interior electrica...
Electrical impedance tomography aims at reconstructing the interior electrical conductivity from sur...
This talk is devoted to the Electromagnetic Imaging of materials. Electromagnetic Imaging of materia...
We treat an inverse electrical conductivity problem which deals with the reconstruction of nonlinear...
The inverse problem dealt with in this article consists of reconstructing the electrical conductivit...
The monotonicity-based approach has become one of the fundamental methods for reconstructing inclusi...
19 pagesInternational audienceThe monotonicity-based approach has become one of the fundamental meth...
In eddy current tomography, the conductivity profile of conductive materials is reconstructed throug...
In eddy current tomography the conductivity profile of conductive materials is reconstructed through...
This paper is focused on the non-iterative (direct) imaging of conductive materials from magnetic in...
The inverse problem treated in this article consists in reconstructing the electrical conductivity f...
We consider inverse problems for p-Laplace type equa-tions under monotonicity assumptions. In two di...
The aim of hybrid inverse problems such as Acousto-Electric Tomography or Current Density Imaging is...
Electrical capacitance tomography (ECT) is concerned with the reconstruction of spatial permittivity...
In acousto-electric tomography, the objective is to extract information about the interior electrica...
Electrical impedance tomography aims at reconstructing the interior electrical conductivity from sur...
This talk is devoted to the Electromagnetic Imaging of materials. Electromagnetic Imaging of materia...