PURPOSE: The use of magnetic resonance imaging (MRI) in radiotherapy treatment planning has rapidly increased due to its ability to evaluate patient's anatomy without the use of ionizing radiation and due to its high soft tissue contrast. For these reasons, MRI has become the modality of choice for longitudinal and adaptive treatment studies. Automatic segmentation could offer many benefits for these studies. In this work, we describe a T2-weighted MRI dataset of head and neck cancer patients that can be used to evaluate the accuracy of head and neck normal tissue auto-segmentation systems through comparisons to available expert manual segmentations. ACQUISITION AND VALIDATION METHODS: T2-weighted MRI images were acquired for 55 head and ne...
Background: Semi-automated segmentation using deformable registration of selected atlas cases consis...
Purpose: To evaluate the accuracy of deep-learning-based auto-segmentation of the superior constrict...
Purpose: Automated delineation of structures and organs is a key step in medical imaging. However, d...
Purpose: To investigate multiple deep learning methods for automated segmentation (auto-segmentation...
The dramatic increase of magnetic resonance imaging (MRI) in daily treatment planning and response a...
Modern technology allows radiation therapy dose distributions to conform closely to targets, providi...
<p><b>Background:</b> Manual delineation of structures in head and neck cancers is an extremely time...
Background : Accurate segmentation of head and neck squamous cell cancer (HNSCC) is important for ra...
00000International audienceOwing to its excellent soft-tissue contrast, magnetic resonance (MR) imag...
BACKGROUND AND PURPOSE: Accurate conformal radiotherapy treatment requires manual delineation of tar...
Radiation therapy is often offered as the primary treatment for head and neck cancer(HNC). Accurate ...
To perform statistical validation of a newly developed magnetic resonance imaging (MRI) auto-contour...
PurposeTo investigate the performance of 4 atlas-based (multi-ABAS) and 2 deep learning (DL) solutio...
Purpose: Automated delineation of structures and organs is a key step in medical imaging. However, d...
Background and purpose: Accurate segmentation of organs-at-risk (OARs) is crucial but tedious and ti...
Background: Semi-automated segmentation using deformable registration of selected atlas cases consis...
Purpose: To evaluate the accuracy of deep-learning-based auto-segmentation of the superior constrict...
Purpose: Automated delineation of structures and organs is a key step in medical imaging. However, d...
Purpose: To investigate multiple deep learning methods for automated segmentation (auto-segmentation...
The dramatic increase of magnetic resonance imaging (MRI) in daily treatment planning and response a...
Modern technology allows radiation therapy dose distributions to conform closely to targets, providi...
<p><b>Background:</b> Manual delineation of structures in head and neck cancers is an extremely time...
Background : Accurate segmentation of head and neck squamous cell cancer (HNSCC) is important for ra...
00000International audienceOwing to its excellent soft-tissue contrast, magnetic resonance (MR) imag...
BACKGROUND AND PURPOSE: Accurate conformal radiotherapy treatment requires manual delineation of tar...
Radiation therapy is often offered as the primary treatment for head and neck cancer(HNC). Accurate ...
To perform statistical validation of a newly developed magnetic resonance imaging (MRI) auto-contour...
PurposeTo investigate the performance of 4 atlas-based (multi-ABAS) and 2 deep learning (DL) solutio...
Purpose: Automated delineation of structures and organs is a key step in medical imaging. However, d...
Background and purpose: Accurate segmentation of organs-at-risk (OARs) is crucial but tedious and ti...
Background: Semi-automated segmentation using deformable registration of selected atlas cases consis...
Purpose: To evaluate the accuracy of deep-learning-based auto-segmentation of the superior constrict...
Purpose: Automated delineation of structures and organs is a key step in medical imaging. However, d...