This article presents the implementation and validation of a dose calculation approach for deforming anatomical objects. Deformation is represented by deformation vector fields leading to deformed voxel grids representing the different deformation scenarios. Particle transport in the resulting deformed voxels is handled through the approximation of voxel surfaces by triangles in the geometry implementation of the Swiss Monte Carlo Plan framework. The focus lies on the validation methodology which uses computational phantoms representing the same physical object through regular and irregular voxel grids. These phantoms are chosen such that the new implementation for a deformed voxel grid can be compared directly with an established dose calc...
Monte Carlo modelling of a voxel human anatomy for external and internal dosimetr
The estimation of energy and dose distribution patterns in respiratory-induced organ motion constitu...
We propose a new type of computational phantom, the "4D voxel phantom," for realistic mode...
A voxel warping method for 4D dose accumulation was implemented in the VMC++ Monte Carlo code. Dose ...
A new deformable geometry class for the VMC++ Monte Carlo code was implemented based on the voxel wa...
International audienceThe distribution patterns estimation of energy and dosein respiratory-induced ...
Purpose: Strategies for dose accumulation in deforming anatomy are of interest in radiotherapy. Algo...
For radiation therapy of tumours in abdomen and thorax, accurate dose calculation is challenging bec...
Inaccurate dose calculation in radiotherapy can lead to errors in treatment delivery and evaluation ...
Estimating the dose distribution in a victim's body is a relevant indicator in assessing biological ...
The purpose of this work is to investigate the efficacy of using multi-resolution nonuniform dose vo...
A limitation of current dose calculation algorithms employed in radiotherapy treatment planning is t...
International audienceThe estimation of the distribution patterns of energy and dose in respiratory-...
The aim of IMAGINE project[1], started in autumn, 2002, is to develop a high-speed and accurate dose...
The aim of any radiotherapy is to tailor the tumoricidal radiation dose to the target volume and to ...
Monte Carlo modelling of a voxel human anatomy for external and internal dosimetr
The estimation of energy and dose distribution patterns in respiratory-induced organ motion constitu...
We propose a new type of computational phantom, the "4D voxel phantom," for realistic mode...
A voxel warping method for 4D dose accumulation was implemented in the VMC++ Monte Carlo code. Dose ...
A new deformable geometry class for the VMC++ Monte Carlo code was implemented based on the voxel wa...
International audienceThe distribution patterns estimation of energy and dosein respiratory-induced ...
Purpose: Strategies for dose accumulation in deforming anatomy are of interest in radiotherapy. Algo...
For radiation therapy of tumours in abdomen and thorax, accurate dose calculation is challenging bec...
Inaccurate dose calculation in radiotherapy can lead to errors in treatment delivery and evaluation ...
Estimating the dose distribution in a victim's body is a relevant indicator in assessing biological ...
The purpose of this work is to investigate the efficacy of using multi-resolution nonuniform dose vo...
A limitation of current dose calculation algorithms employed in radiotherapy treatment planning is t...
International audienceThe estimation of the distribution patterns of energy and dose in respiratory-...
The aim of IMAGINE project[1], started in autumn, 2002, is to develop a high-speed and accurate dose...
The aim of any radiotherapy is to tailor the tumoricidal radiation dose to the target volume and to ...
Monte Carlo modelling of a voxel human anatomy for external and internal dosimetr
The estimation of energy and dose distribution patterns in respiratory-induced organ motion constitu...
We propose a new type of computational phantom, the "4D voxel phantom," for realistic mode...