International audienceDose calculation from MRI is a topical issue. New treatment systems combining a linear accelerator with a MRI have been recently being developed. MRI has good soft tissue contrast without ionizing radiation exposure. However, unlike CT, MRI does not provide electron density information necessary for dose calculation. We propose in this paper a machine learning method to simulate a CT from a target MRI and co-registered CT-MRI training set. Ten prostate MR and CT images have been considered. Firstly, a reference image was randomly selected in the training set. A common space has been built thanks to affine registrations between the training set and the reference image. Multiscale image descriptors such as spatial inform...
Purpose: Magnetic resonance imaging (MRI) plays an increasing role in radiotherapy dose planning. In...
Prostate radiation therapy dose planning currently requires computed tomography (CT) scans as they c...
Purpose: Prostate radiation therapy dose planning directly on magnetic resonance imaging (MRI) scans...
International audienceDose calculation from MRI is a topical issue. New treatment systems combining ...
WWith increasing interests in magnetic resonance imaging (MRI)-only radiation therapy (RT) and the e...
Magnetic resonance imaging (MRI)-guided radiation therapy (RT) treatment planning is limited by the ...
International audienceAs new radiotherapy treatment systems using MRI (rather than traditional CT) a...
There is increasing interest in MR-only radiotherapy planning since it provides superb soft-tissue c...
International audienceDeep learning methods (DLM) have recently been developed to generate pseudo-CT...
Objective: Machine learning (ML) based radiation treatment (RT) planning addresses the iterative and...
International audiencePurpose - Methods have been recently developed to generate pseudo-computed tom...
Purpose: Absorbed dose calculation in magnetic resonance-guided radiation therapy (MRgRT) is commonl...
To enable magnetic resonance (MR)-only radiotherapy and facilitate modelling of radiation attenuatio...
Purpose: Absorbed dose calculation in magnetic resonance-guided radiation therapy (MRgRT) is commonl...
International audiencePurpose - Deep learning methods (DLMs) have recently been proposed to generate...
Purpose: Magnetic resonance imaging (MRI) plays an increasing role in radiotherapy dose planning. In...
Prostate radiation therapy dose planning currently requires computed tomography (CT) scans as they c...
Purpose: Prostate radiation therapy dose planning directly on magnetic resonance imaging (MRI) scans...
International audienceDose calculation from MRI is a topical issue. New treatment systems combining ...
WWith increasing interests in magnetic resonance imaging (MRI)-only radiation therapy (RT) and the e...
Magnetic resonance imaging (MRI)-guided radiation therapy (RT) treatment planning is limited by the ...
International audienceAs new radiotherapy treatment systems using MRI (rather than traditional CT) a...
There is increasing interest in MR-only radiotherapy planning since it provides superb soft-tissue c...
International audienceDeep learning methods (DLM) have recently been developed to generate pseudo-CT...
Objective: Machine learning (ML) based radiation treatment (RT) planning addresses the iterative and...
International audiencePurpose - Methods have been recently developed to generate pseudo-computed tom...
Purpose: Absorbed dose calculation in magnetic resonance-guided radiation therapy (MRgRT) is commonl...
To enable magnetic resonance (MR)-only radiotherapy and facilitate modelling of radiation attenuatio...
Purpose: Absorbed dose calculation in magnetic resonance-guided radiation therapy (MRgRT) is commonl...
International audiencePurpose - Deep learning methods (DLMs) have recently been proposed to generate...
Purpose: Magnetic resonance imaging (MRI) plays an increasing role in radiotherapy dose planning. In...
Prostate radiation therapy dose planning currently requires computed tomography (CT) scans as they c...
Purpose: Prostate radiation therapy dose planning directly on magnetic resonance imaging (MRI) scans...