Dual Energy Computed Tomography (DECT) allows performing simple material separation or differentiation based on the energy dependence of the attenuation coefficient by acquiring an image at high and low energy. Up to date, many applications of DECT exist in clinical practice, but the translation of this method to preclinical systems has not been investigated thoroughly. The aim of this study is to validate the feasibility of bone - iodine separation using DECT on a standard FLEX Triumph-II system. Compared to clinical CT, microCT images are inherently prone to a higher amount of noise. A possible application may be found in vascular studies where scanning an animal at two different energies allows to separate the different iodine filled vas...
Objective: to study the capabilities of single-source dual-energy computed tomography (DECT) in quan...
OBJECTIVE: To explore the feasibility of dual-source dual-energy computed tomography (DSDECT) for he...
A better understanding of the complex mechanisms regulating bone development, homeostasis and repair...
In dual-energy CT (DECT), two different x-ray spectra are used to acquire two image datasets of the ...
Material differentiation by dual energy CT: initial experience Abstract The aim of this study was to...
Background: To investigate the feasibility of using dual-energy CT (DECT) for tissue segmentation an...
In recent years, technological advances have allowed manufacturers to implement dual-energy computed...
In recent years, technological advances have allowed manufacturers to implement dual-energy computed...
In recent years, technological advances have allowed manufacturers to implement dual-energy computed...
In recent years, technological advances have allowed manufacturers to implement dual-energy computed...
Preliminary experiments for digital subtraction computed tomography (CT) at the K-edge of iodine (33...
Dual-energy CT (DECT) is a tremendous innovation in CT technology that allows creation of numerous i...
Dual energy computed tomography, which consists of the acquisition of two images of a given region o...
Computed tomography (CT) with monochromatic x-ray beams was used to image phantoms and a live rabbit...
The choice of the material base to which the material decomposition is performed in dual-energy comp...
Objective: to study the capabilities of single-source dual-energy computed tomography (DECT) in quan...
OBJECTIVE: To explore the feasibility of dual-source dual-energy computed tomography (DSDECT) for he...
A better understanding of the complex mechanisms regulating bone development, homeostasis and repair...
In dual-energy CT (DECT), two different x-ray spectra are used to acquire two image datasets of the ...
Material differentiation by dual energy CT: initial experience Abstract The aim of this study was to...
Background: To investigate the feasibility of using dual-energy CT (DECT) for tissue segmentation an...
In recent years, technological advances have allowed manufacturers to implement dual-energy computed...
In recent years, technological advances have allowed manufacturers to implement dual-energy computed...
In recent years, technological advances have allowed manufacturers to implement dual-energy computed...
In recent years, technological advances have allowed manufacturers to implement dual-energy computed...
Preliminary experiments for digital subtraction computed tomography (CT) at the K-edge of iodine (33...
Dual-energy CT (DECT) is a tremendous innovation in CT technology that allows creation of numerous i...
Dual energy computed tomography, which consists of the acquisition of two images of a given region o...
Computed tomography (CT) with monochromatic x-ray beams was used to image phantoms and a live rabbit...
The choice of the material base to which the material decomposition is performed in dual-energy comp...
Objective: to study the capabilities of single-source dual-energy computed tomography (DECT) in quan...
OBJECTIVE: To explore the feasibility of dual-source dual-energy computed tomography (DSDECT) for he...
A better understanding of the complex mechanisms regulating bone development, homeostasis and repair...