Advances in artificial intelligence-based methods have led to the development and publication of numerous systems for auto-segmentation in radiotherapy. These systems have the potential to decrease contour variability, which has been associated with poor clinical outcomes and increased efficiency in the treatment planning workflow. However, there are no uniform standards for evaluating auto-segmentation platforms to assess their efficacy at meeting these goals. Here, we review the most frequently used evaluation techniques which include geometric overlap, dosimetric parameters, time spent contouring, and clinical rating scales. These data suggest that many of the most commonly used geometric indices, such as the Dice Similarity Coefficient,...
00000International audienceOwing to its excellent soft-tissue contrast, magnetic resonance (MR) imag...
Background and Purpose: A wide range of quantitative measures are available to facilitate clinical i...
Purpose Methods Automated techniques for estimating the contours of organs and structures in medical...
Advances in artificial intelligence-based methods have led to the development and publication of num...
Auto-contouring could revolutionise future planning of radiotherapy treatment. The lack of consensus...
Purpose: To analyze geometric discrepancy and dosimetric impact in using contours generated by auto-...
Background and purpose: In radiotherapy, automatic organ-at-risk segmentation algorithms allow faste...
Proper delineation of both target volumes and organs at risk is a crucial step in the radiation ther...
Background: Manual contouring is time-consuming and subjective. Thus, auto-segmentation methods, whi...
Developers and users of artificial-intelligence-based tools for automatic contouring and treatment p...
Abstract: Background and Purpose: Clinical Artificial Intelligence (AI) implementations lack ground-...
Atlas-based auto-segmentation (ABS) procedure used in radiotherapy can be classified into two groups...
Purpose/objective(s)Auto-segmentation with artificial intelligence (AI) offers an opportunity to red...
Abstract Purpose We recently described the validation of deep learning-based auto-segmented contour ...
Purpose: In radiotherapy, geometric indices are often used to evaluate the accuracy of contouring. H...
00000International audienceOwing to its excellent soft-tissue contrast, magnetic resonance (MR) imag...
Background and Purpose: A wide range of quantitative measures are available to facilitate clinical i...
Purpose Methods Automated techniques for estimating the contours of organs and structures in medical...
Advances in artificial intelligence-based methods have led to the development and publication of num...
Auto-contouring could revolutionise future planning of radiotherapy treatment. The lack of consensus...
Purpose: To analyze geometric discrepancy and dosimetric impact in using contours generated by auto-...
Background and purpose: In radiotherapy, automatic organ-at-risk segmentation algorithms allow faste...
Proper delineation of both target volumes and organs at risk is a crucial step in the radiation ther...
Background: Manual contouring is time-consuming and subjective. Thus, auto-segmentation methods, whi...
Developers and users of artificial-intelligence-based tools for automatic contouring and treatment p...
Abstract: Background and Purpose: Clinical Artificial Intelligence (AI) implementations lack ground-...
Atlas-based auto-segmentation (ABS) procedure used in radiotherapy can be classified into two groups...
Purpose/objective(s)Auto-segmentation with artificial intelligence (AI) offers an opportunity to red...
Abstract Purpose We recently described the validation of deep learning-based auto-segmented contour ...
Purpose: In radiotherapy, geometric indices are often used to evaluate the accuracy of contouring. H...
00000International audienceOwing to its excellent soft-tissue contrast, magnetic resonance (MR) imag...
Background and Purpose: A wide range of quantitative measures are available to facilitate clinical i...
Purpose Methods Automated techniques for estimating the contours of organs and structures in medical...