Purpose: To assess image quality and to quantify the accuracy of relative electron densities (rho(e)) and effective atomic numbers (Z(eff)) for three dual-energy computed tomography (DECT) scanners: a novel single-source split-filter (i. e., twin-beam) and two dual-source scanners. Methods: Measurements were made with a second generation dual-source scanner at 80/140Sn kVp, a third-generation twin-beam single-source scanner at 120 kVp with gold (Au) and tin (Sn) filters, and a third-generation dual-source scanner at 90/150Sn kVp. Three phantoms with tissue inserts were scanned and used for calibration and validation of parameterized methods to extract rho(e) and Z(eff), whereas iodine and calcium inserts were used to quantify Contrast-to-No...
Purpose: To assess the influence of different dual-energy CT (DECT) scanner techniques on the severi...
Evaluation of imaging performance across dual-energy CT (DECT) platforms, including dual-layer CT (D...
Dual-energy CT (DECT) is a tremendous innovation in CT technology that allows creation of numerous i...
Purpose: To assess image quality and to quantify the accuracy of relative electron densities (rho(e)...
Background and purpose: Dual energy CT (DECT) imaging can provide both the electron density rho(e) a...
Objective: The aim of this work was to investigate whether quantitative dual-energy CT (DECT) imagin...
OBJECTIVE: To determine the accuracy of iodine quantification with dual energy computed tomography (...
This research offers a comparison of two types of computed tomography (CT) configurations by explori...
In dual-source dual-energy CT, the imagesreconstructed from the low- and high-energy scans (typicall...
Objectives: To investigate inter-scan and inter-scanner variation of iodine concentration (IC) and a...
Dual-energy computed tomography (DECT) is an established method in the field of medical CT to obtain...
CT and its comprehensive usage have become one of the most indispensable components in medical field...
Objective: To analyse the effect of different image reconstruction techniques on image quality and d...
The use of additional spectral filtration for dual-energy (DE) imaging using a dual-source CT (DSCT)...
This report conducts a comprehensive phantom study on the dual-energy computed tomography (DECT) sys...
Purpose: To assess the influence of different dual-energy CT (DECT) scanner techniques on the severi...
Evaluation of imaging performance across dual-energy CT (DECT) platforms, including dual-layer CT (D...
Dual-energy CT (DECT) is a tremendous innovation in CT technology that allows creation of numerous i...
Purpose: To assess image quality and to quantify the accuracy of relative electron densities (rho(e)...
Background and purpose: Dual energy CT (DECT) imaging can provide both the electron density rho(e) a...
Objective: The aim of this work was to investigate whether quantitative dual-energy CT (DECT) imagin...
OBJECTIVE: To determine the accuracy of iodine quantification with dual energy computed tomography (...
This research offers a comparison of two types of computed tomography (CT) configurations by explori...
In dual-source dual-energy CT, the imagesreconstructed from the low- and high-energy scans (typicall...
Objectives: To investigate inter-scan and inter-scanner variation of iodine concentration (IC) and a...
Dual-energy computed tomography (DECT) is an established method in the field of medical CT to obtain...
CT and its comprehensive usage have become one of the most indispensable components in medical field...
Objective: To analyse the effect of different image reconstruction techniques on image quality and d...
The use of additional spectral filtration for dual-energy (DE) imaging using a dual-source CT (DSCT)...
This report conducts a comprehensive phantom study on the dual-energy computed tomography (DECT) sys...
Purpose: To assess the influence of different dual-energy CT (DECT) scanner techniques on the severi...
Evaluation of imaging performance across dual-energy CT (DECT) platforms, including dual-layer CT (D...
Dual-energy CT (DECT) is a tremendous innovation in CT technology that allows creation of numerous i...