Using numerical simulations, the influence of various imaging parameters on the resulting image can be determined for various imaging technologies. To achieve this, visualization of fine tissue structures needed to evaluate the image quality with different radiation quality and dose is essential. The present work examines a method that employs simulations of the imaging process using Monte Carlo methods and a combination of a standard and higher resolution voxel models. A hybrid model, based on nonlinear uniform rational B-spline and polygon mesh surfaces, was constructed from an existing voxel model of a female patient of a resolution in the range of millimeters. The resolution of the hybrid model was 500 μm, i.e., substantially finer t...
Monte Carlo modeling of light transport in multilayered tissue (MCML) is modified to incorporate obj...
In order to carry out Monte Carlo (MC) dosimetry studies, voxel phantoms, modeling human anatomy, an...
Existing anatomical models are mostly representative of three-dimensional (3D) standing individuals,...
In radiography There is generally a conflict between The best image quality and The lowest possible ...
The Monte Carlo simulation model of the chest and breast imaging systems including a voxelised model...
For optimisation in diagnostic medical imaging it is important to consider the relation between diag...
The purpose of this work is to investigate the efficacy of using multi-resolution nonuniform dose vo...
Developing voxel anthropomorphic models based on CT images for dosimetric application
The aim of IMAGINE project[1], started in autumn, 2002, is to develop a high-speed and accurate dose...
Human computational phantoms have been used extensively for scientific experimental analysis and exp...
Monte Carlo modelling of a voxel human anatomy for external and internal dosimetr
A Monte Carlo code for the simulation of X-ray imaging and spectroscopy experiments in heterogeneous...
International audienceDoses from radiopharmaceuticals absorbed by organs can be assessed using Monte...
In this paper the authors propose a VOXEL model for obtaining the octree of sculptured surfaces and ...
In the present study, a high-quality voxel model of a Korean adult male was converted to a surface m...
Monte Carlo modeling of light transport in multilayered tissue (MCML) is modified to incorporate obj...
In order to carry out Monte Carlo (MC) dosimetry studies, voxel phantoms, modeling human anatomy, an...
Existing anatomical models are mostly representative of three-dimensional (3D) standing individuals,...
In radiography There is generally a conflict between The best image quality and The lowest possible ...
The Monte Carlo simulation model of the chest and breast imaging systems including a voxelised model...
For optimisation in diagnostic medical imaging it is important to consider the relation between diag...
The purpose of this work is to investigate the efficacy of using multi-resolution nonuniform dose vo...
Developing voxel anthropomorphic models based on CT images for dosimetric application
The aim of IMAGINE project[1], started in autumn, 2002, is to develop a high-speed and accurate dose...
Human computational phantoms have been used extensively for scientific experimental analysis and exp...
Monte Carlo modelling of a voxel human anatomy for external and internal dosimetr
A Monte Carlo code for the simulation of X-ray imaging and spectroscopy experiments in heterogeneous...
International audienceDoses from radiopharmaceuticals absorbed by organs can be assessed using Monte...
In this paper the authors propose a VOXEL model for obtaining the octree of sculptured surfaces and ...
In the present study, a high-quality voxel model of a Korean adult male was converted to a surface m...
Monte Carlo modeling of light transport in multilayered tissue (MCML) is modified to incorporate obj...
In order to carry out Monte Carlo (MC) dosimetry studies, voxel phantoms, modeling human anatomy, an...
Existing anatomical models are mostly representative of three-dimensional (3D) standing individuals,...