Boundary element and hybrid boundary element—finite element approaches are applied to the computation of induced electric field and specific absorption rate in voxel-based human models undergoing magnetic resonance imaging. Due to the very large size of the algebraic system, the procedure uses an iterative GMRES solver recalculating the element matrix at each iteration. A suitable processing of the Green integrals and a massively parallelized algorithm, based on the use of graphical processing units, leads to a strong reduction of the computational time
In this paper, we present the implementation of a Magnetic Resonance Imaging (MRI) simulator on a GR...
A computational procedure, based on the boundary element method, has been developed in order to eva...
Realistic computer modelling of biological objects requires building of very accurate and realistic ...
A hybrid finite element–boundary element method, developed to solve eddy-current problems in the fre...
A numerical method is presented to compute electromagnetic fields inside a 2 mm high resolution, ana...
The aim of this paper is the investigation of the numerical properties of the boundary element metho...
Boundary element method (BEM) is one of the numerical methods which is commonly used to solve the fo...
This paper deals with the electric field generated inside the bodies of people moving in proximity t...
Human brain functions are based on the electrochemical activity and interaction of the neurons const...
The forward problem of electromagnetic source imaging has two components: a numerical model to solve...
This paper aims at evaluating the thermal effects produced by the gradient coils on patients carryin...
Representations of the active cell populations on the cortical surface via electric and magnetic mea...
textabstractFE-models for structural solid mechanics analyses can be readily generated from computer...
FE-models for structural solid mechanics analyses can be readily generated from computer images via ...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
In this paper, we present the implementation of a Magnetic Resonance Imaging (MRI) simulator on a GR...
A computational procedure, based on the boundary element method, has been developed in order to eva...
Realistic computer modelling of biological objects requires building of very accurate and realistic ...
A hybrid finite element–boundary element method, developed to solve eddy-current problems in the fre...
A numerical method is presented to compute electromagnetic fields inside a 2 mm high resolution, ana...
The aim of this paper is the investigation of the numerical properties of the boundary element metho...
Boundary element method (BEM) is one of the numerical methods which is commonly used to solve the fo...
This paper deals with the electric field generated inside the bodies of people moving in proximity t...
Human brain functions are based on the electrochemical activity and interaction of the neurons const...
The forward problem of electromagnetic source imaging has two components: a numerical model to solve...
This paper aims at evaluating the thermal effects produced by the gradient coils on patients carryin...
Representations of the active cell populations on the cortical surface via electric and magnetic mea...
textabstractFE-models for structural solid mechanics analyses can be readily generated from computer...
FE-models for structural solid mechanics analyses can be readily generated from computer images via ...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
In this paper, we present the implementation of a Magnetic Resonance Imaging (MRI) simulator on a GR...
A computational procedure, based on the boundary element method, has been developed in order to eva...
Realistic computer modelling of biological objects requires building of very accurate and realistic ...