Simple Summary Virtual monoenergetic images from dual-energy CT are incrementally used in routine clinical practice. Thus, radiomic analysis will be more often performed on these images in the future. This study characterized the test-retest repeatability and reproducibility of radiomic features from virtual monoenergetic images and their impact on machine-learning-based lesion classification. The results of this study provide a basis to improve radiomic analyses and identify the role of feature stability in classification tasks when using virtual monoenergetic imaging with different scan or reconstruction parameters in multicenter clinical studies. The purpose of this study was to (i) evaluate the test-retest repeatability and reproducibil...
Purpose: To investigate the diagnostic performance of noise-optimized virtual monoenergetic images (...
OBJECTIVE: To determine the value of advanced virtual monoenergetic images (mono+) from dual-energy ...
To investigate a benefit from virtual monoenergetic reconstructions (VMIs) for assessment of arteria...
The purpose of this study was to (i) evaluate the test-retest repeatability and reproducibility of r...
The purpose of this study was to (i) evaluate the test-retest repeatability and reproducibility of r...
The purpose of this study was to (i) evaluate the test-retest repeatability and reproducibility of r...
The purpose of this study was to (i) evaluate the test–retest repeatability and reproducibility of r...
Objectives To investigate the robustness of radiomic features between three dual-energy CT (DECT) sy...
Objectives: To assess the image quality and diagnostic accuracy of a noise-optimized virtual monoene...
In this article, the authors discuss the technical background and summarize the current body of lite...
Background: To compare task-based image quality (TB-IQ) among virtual monoenergetic images (VMI) and...
Background: To compare task-based image quality (TB-IQ) among virtual monoenergetic images (VMI) and...
Background: To compare task-based image quality (TB-IQ) among virtual monoenergetic images (VMI) and...
Purpose The purpose was to assess image quality of portal-venous phase dual-energy computed tomograp...
Purpose: To investigate the diagnostic performance of noise-optimized virtual monoenergetic images (...
Purpose: To investigate the diagnostic performance of noise-optimized virtual monoenergetic images (...
OBJECTIVE: To determine the value of advanced virtual monoenergetic images (mono+) from dual-energy ...
To investigate a benefit from virtual monoenergetic reconstructions (VMIs) for assessment of arteria...
The purpose of this study was to (i) evaluate the test-retest repeatability and reproducibility of r...
The purpose of this study was to (i) evaluate the test-retest repeatability and reproducibility of r...
The purpose of this study was to (i) evaluate the test-retest repeatability and reproducibility of r...
The purpose of this study was to (i) evaluate the test–retest repeatability and reproducibility of r...
Objectives To investigate the robustness of radiomic features between three dual-energy CT (DECT) sy...
Objectives: To assess the image quality and diagnostic accuracy of a noise-optimized virtual monoene...
In this article, the authors discuss the technical background and summarize the current body of lite...
Background: To compare task-based image quality (TB-IQ) among virtual monoenergetic images (VMI) and...
Background: To compare task-based image quality (TB-IQ) among virtual monoenergetic images (VMI) and...
Background: To compare task-based image quality (TB-IQ) among virtual monoenergetic images (VMI) and...
Purpose The purpose was to assess image quality of portal-venous phase dual-energy computed tomograp...
Purpose: To investigate the diagnostic performance of noise-optimized virtual monoenergetic images (...
Purpose: To investigate the diagnostic performance of noise-optimized virtual monoenergetic images (...
OBJECTIVE: To determine the value of advanced virtual monoenergetic images (mono+) from dual-energy ...
To investigate a benefit from virtual monoenergetic reconstructions (VMIs) for assessment of arteria...