PURPOSE To investigate the optimal dual-energy reconstruction technique for the visualization of the hepatic arterial system during dual-energy multidetector computed tomographic (MDCT) angiography of the liver. MATERIALS AND METHODS Twenty-nine nonconsecutive patients underwent dual-energy MDCT angiography of the liver. Synthesized monochromatic (40, 50, 60, and 80 keV) and iodine density data sets were reconstructed. Aortic attenuation, noise, and contrast-to-noise ratio (CNR) were measured. In addition, volume-rendered images were generated and qualitatively assessed by 2 independent readers, blinded to technique. The impact of body size on the readers' scores was also assessed. RESULTS Aortic attenuation, noise, and CNR increased p...
PURPOSE: To evaluate the ability of multi-detector row computed tomography angiography (CTA) in...
Objectives To quantitatively and qualitatively assess abdominal arterial and venous phase contrast-e...
Objectives: To determine the optimal window setting for displaying virtual monoenergetic reconstruct...
OBJECTIVES: To evaluate optimal window settings for display of virtual monoenergetic reconstruction...
Objectives: To assess the image quality and diagnostic accuracy of a noise-optimized virtual monoene...
Objective: To identify the optimal dual-energy computed tomography (DECT) scanning protocol for peri...
Objective: To identify the optimal dual-energy computed tomography (DECT) scanning protocol for peri...
Purpose The purpose was to assess image quality of portal-venous phase dual-energy computed tomograp...
Purpose: Dedicated post-processing of dual-energy computed tomography angiography (DE-CTA) datasets ...
Purpose: We aimed to determine optimal window settings for poly-energetic (PolyE) and virtual mono-e...
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 explore whether single and fused monochromatic images can improve liver tumor detectio...
Objective: This study was designed to determine the optimal blending method and parameters to fuse c...
Purpose: To assess the influence of different dual-energy CT (DECT) scanner techniques on the severi...
PURPOSE: To evaluate the ability of multi-detector row computed tomography angiography (CTA) in...
Objectives To quantitatively and qualitatively assess abdominal arterial and venous phase contrast-e...
Objectives: To determine the optimal window setting for displaying virtual monoenergetic reconstruct...
OBJECTIVES: To evaluate optimal window settings for display of virtual monoenergetic reconstruction...
Objectives: To assess the image quality and diagnostic accuracy of a noise-optimized virtual monoene...
Objective: To identify the optimal dual-energy computed tomography (DECT) scanning protocol for peri...
Objective: To identify the optimal dual-energy computed tomography (DECT) scanning protocol for peri...
Purpose The purpose was to assess image quality of portal-venous phase dual-energy computed tomograp...
Purpose: Dedicated post-processing of dual-energy computed tomography angiography (DE-CTA) datasets ...
Purpose: We aimed to determine optimal window settings for poly-energetic (PolyE) and virtual mono-e...
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 explore whether single and fused monochromatic images can improve liver tumor detectio...
Objective: This study was designed to determine the optimal blending method and parameters to fuse c...
Purpose: To assess the influence of different dual-energy CT (DECT) scanner techniques on the severi...
PURPOSE: To evaluate the ability of multi-detector row computed tomography angiography (CTA) in...
Objectives To quantitatively and qualitatively assess abdominal arterial and venous phase contrast-e...
Objectives: To determine the optimal window setting for displaying virtual monoenergetic reconstruct...