The purpose of this study was to explore the effects of CT slice thickness, reconstruction algorithm, and radiation dose on quantification of CT features to characterize lung nodules using a chest phantom. Spherical lung nodule phantoms of known densities (−630 and + 100 HU) were inserted into an anthropomorphic thorax phantom. CT scan was performed ten times with relocations. CT data were reconstructed using 12 different imaging settings; three different slice thicknesses of 1.25, 2.5, and 5.0 mm, two reconstruction kernels of sharp and standard, and two radiation dose of 30 mAs and 12 mAs. Lesions were segmented using a semiautomated method. Twenty representative CT quantitative features representing CT density and texture were compared u...
To evaluate the effect of high-resolution scan mode and iterative reconstruction on lung nodule 3D v...
To assess volumetric measurement variability in pulmonary nodules detected at low-dose chest CT with...
To evaluate the effect of high-resolution scan mode and iterative reconstruction on lung nodule 3D v...
AbstractPURPOSE: To explore the effects of computed tomography (CT) slice thickness and reconstructi...
Consistency and duplicability in Computed Tomography (CT) output is essential to quantitative imagin...
"The purpose of this study is to investigate the effects of CT scanning and reconstruction parameter...
Background and objective It has been proven that volumetric measurements could detect subtle changes...
PurposeTo investigate the effects of dose level and reconstruction method on density and texture bas...
Radiomic features are quantitative metrics calculated over regions of interest on medical images. Tu...
PURPOSE: Texture features have been investigated as a biomarker of response and malignancy. Because ...
Radiomics treats images as quantitative data and promises to improve cancer prediction in radiology ...
PURPOSEWe aimed to identify the impact of radiation dose and iterative reconstruction (IR) on measur...
Purpose: This study aims to investigate the effect of filtered back projection (FBP) and sinogram-...
To evaluate the influence of slice thickness, reconstruction algorithm and tube current (mA) on the ...
textabstractObjective: To assess volumetric measurement variability in pulmonary nodules detected at...
To evaluate the effect of high-resolution scan mode and iterative reconstruction on lung nodule 3D v...
To assess volumetric measurement variability in pulmonary nodules detected at low-dose chest CT with...
To evaluate the effect of high-resolution scan mode and iterative reconstruction on lung nodule 3D v...
AbstractPURPOSE: To explore the effects of computed tomography (CT) slice thickness and reconstructi...
Consistency and duplicability in Computed Tomography (CT) output is essential to quantitative imagin...
"The purpose of this study is to investigate the effects of CT scanning and reconstruction parameter...
Background and objective It has been proven that volumetric measurements could detect subtle changes...
PurposeTo investigate the effects of dose level and reconstruction method on density and texture bas...
Radiomic features are quantitative metrics calculated over regions of interest on medical images. Tu...
PURPOSE: Texture features have been investigated as a biomarker of response and malignancy. Because ...
Radiomics treats images as quantitative data and promises to improve cancer prediction in radiology ...
PURPOSEWe aimed to identify the impact of radiation dose and iterative reconstruction (IR) on measur...
Purpose: This study aims to investigate the effect of filtered back projection (FBP) and sinogram-...
To evaluate the influence of slice thickness, reconstruction algorithm and tube current (mA) on the ...
textabstractObjective: To assess volumetric measurement variability in pulmonary nodules detected at...
To evaluate the effect of high-resolution scan mode and iterative reconstruction on lung nodule 3D v...
To assess volumetric measurement variability in pulmonary nodules detected at low-dose chest CT with...
To evaluate the effect of high-resolution scan mode and iterative reconstruction on lung nodule 3D v...