AbstractWe consider an inverse problem related to external radiation therapy treatment planning. The dose calculation (the forward problem) is based on the Boltzmann Transport Equation (BTE) which models exactly the transport of charged particles in tissue. The inverse planning (the inverse problem) is formulated as an optimal boundary control problem. The optimal control variable is the incoming (external) flux and the output is the dose distribution in patient domain. Both physical and biological cost functions are defined but here we concentrate on the physically based optimization. The discretization is done by finite element approximations for which the BTE is expressed in its variational form. In the optimization process of the discre...
The aim of this work is to develop a discrete ordinates Boltzmann solver that can be used for calcul...
Abstract. We apply the recently proposed superiorization methodology (SM) to the inverse planning pr...
Treatment planning in high dose‐rate brachytherapy has traditionally been conducted with manual forw...
AbstractWe consider an inverse problem related to external radiation therapy treatment planning. The...
Radiation therapy becomes an important and common tool for cancer treatment with increasing the numb...
AbstractWe consider a system of Boltzmann transport equations which models the charged particle evol...
Patient motion during treatment is one of the future challenges in the field of external beam radiot...
Abstract. A mathematical formulation of the radiation therapy problem consists of a pair of forward ...
For some decades radiation therapy has been proved successful in cancer treatment. It is the major t...
There are two general paradigms for treatment planning: forward planning and inverse planning. In fo...
Objective A discrete ordinates Boltzmann solver has recently been developed for use as a fast and ac...
AbstractFor some decades, radiation therapy has been proved successful in cancer treatment. It is th...
AbstractThe goal of radiotherapy is to destroy a tumour in the patient's body by means of radiation....
International audienceIn this paper, we present a mathematical model that describes tumor-normal cel...
The intensity-modulated radiation therapy optimization algorithm presented here is based on linear a...
The aim of this work is to develop a discrete ordinates Boltzmann solver that can be used for calcul...
Abstract. We apply the recently proposed superiorization methodology (SM) to the inverse planning pr...
Treatment planning in high dose‐rate brachytherapy has traditionally been conducted with manual forw...
AbstractWe consider an inverse problem related to external radiation therapy treatment planning. The...
Radiation therapy becomes an important and common tool for cancer treatment with increasing the numb...
AbstractWe consider a system of Boltzmann transport equations which models the charged particle evol...
Patient motion during treatment is one of the future challenges in the field of external beam radiot...
Abstract. A mathematical formulation of the radiation therapy problem consists of a pair of forward ...
For some decades radiation therapy has been proved successful in cancer treatment. It is the major t...
There are two general paradigms for treatment planning: forward planning and inverse planning. In fo...
Objective A discrete ordinates Boltzmann solver has recently been developed for use as a fast and ac...
AbstractFor some decades, radiation therapy has been proved successful in cancer treatment. It is th...
AbstractThe goal of radiotherapy is to destroy a tumour in the patient's body by means of radiation....
International audienceIn this paper, we present a mathematical model that describes tumor-normal cel...
The intensity-modulated radiation therapy optimization algorithm presented here is based on linear a...
The aim of this work is to develop a discrete ordinates Boltzmann solver that can be used for calcul...
Abstract. We apply the recently proposed superiorization methodology (SM) to the inverse planning pr...
Treatment planning in high dose‐rate brachytherapy has traditionally been conducted with manual forw...