The aim of this paper is the investigation of the numerical properties of the boundary element method (BEM) when applied to dosimetric analysis of human exposure to electromagnetic fields adopting high resolution voxel-based data sets. Some test problems are analyzed considering the neck region of the human body radiated by a loop antenna. Different strategies in the development of the problem equations are proposed and their effects on the conditioning of the BEM matrix are discussed. Several direct and iterative solvers are applied to the model problems and their efficiency is compared
Boundary element and hybrid boundary element—finite element approaches are applied to the computatio...
In this chapter, authors provide a description of boundary element method (BEM) applications in biom...
The research focuses on a hybrid experimental-numerical technique, based on Boundary Element Method ...
The paper presents the human exposure assessment to Extremely Low Frequency fields (ELF) by means of...
Representations of the active cell populations on the cortical surface via electric and magnetic mea...
In this paper the hybrid finite element/boundary element method (FEM/BEM) is used to analyze the hum...
The forward problem of electromagnetic source imaging has two components: a numerical model to solve...
This paper focuses on the estimation of the Specific Absorption Rate (SAR) and temperature increase ...
Boundary and finite element modeling approach to the assessment of electrostatic field on human head...
This paper evaluates the currents induced in the human body when exposed to extremely low frequency ...
The aim of the boundary element method (BEM) is the numerical solution of integral equations derived...
The work reported in this thesis focuses on the calculation of the head-related transfer functions (...
MRI has become an invaluable tool for diagnostic medicine. Its operation is based on the principles ...
This paper investigates various aspects of numerically modelled individualised head-related (and pin...
In this paper, a finite element method, based on a boundary value approach, for the evaluation of th...
Boundary element and hybrid boundary element—finite element approaches are applied to the computatio...
In this chapter, authors provide a description of boundary element method (BEM) applications in biom...
The research focuses on a hybrid experimental-numerical technique, based on Boundary Element Method ...
The paper presents the human exposure assessment to Extremely Low Frequency fields (ELF) by means of...
Representations of the active cell populations on the cortical surface via electric and magnetic mea...
In this paper the hybrid finite element/boundary element method (FEM/BEM) is used to analyze the hum...
The forward problem of electromagnetic source imaging has two components: a numerical model to solve...
This paper focuses on the estimation of the Specific Absorption Rate (SAR) and temperature increase ...
Boundary and finite element modeling approach to the assessment of electrostatic field on human head...
This paper evaluates the currents induced in the human body when exposed to extremely low frequency ...
The aim of the boundary element method (BEM) is the numerical solution of integral equations derived...
The work reported in this thesis focuses on the calculation of the head-related transfer functions (...
MRI has become an invaluable tool for diagnostic medicine. Its operation is based on the principles ...
This paper investigates various aspects of numerically modelled individualised head-related (and pin...
In this paper, a finite element method, based on a boundary value approach, for the evaluation of th...
Boundary element and hybrid boundary element—finite element approaches are applied to the computatio...
In this chapter, authors provide a description of boundary element method (BEM) applications in biom...
The research focuses on a hybrid experimental-numerical technique, based on Boundary Element Method ...