Computed tomography (CT) with monochromatic x-ray beams was used to image phantoms and a live rabbit using the preclinical Multiple Energy Computed Tomography (MECT) system at the National Synchrotron Light Source. MECT has a horizontal fan beam with a subject apparatus rotating about a vertical axis. Images were obtained at 43 keV for single-energy studies, and at energies immediately below and above the 33.17 keV iodine K-edge for dual-energy subtraction CT. Two CdWO{sub 4}-photodiode array detectors were used. The high-resolution detector (0.5 mm pitch, uncollimated) provided 14 line pair/cm in-plane spatial resolution, with lower image noise than conventional CT. Images with the low-resolution detector (1.844-mm pitch, collimated to 0.9...
ObjectivesTo compare contrast-to-noise ratios (CNRs) and iodine discrimination thresholds on iodine ...
ObjectivesTo compare contrast-to-noise ratios (CNRs) and iodine discrimination thresholds on iodine ...
Dual layer CT is a new medical imaging technique, working with two layers of standard scintillator d...
none5noA new multi-energy CT for small animals is being developed at the Physics Department of the U...
none10noQuasi-monochromatic Multi-Energy CT (M.E.C.T.) imaging can produce many upgrades to polychro...
Preliminary experiments for digital subtraction computed tomography (CT) at the K-edge of iodine (33...
A new multi-energy computer tomographic system for small animals (MECT) was developed - and is now o...
Dual Energy Computed Tomography (DECT) allows performing simple material separation or differentiati...
Spectral CT differs from dual-energy CT by using a conventional X-ray tube and a photon-counting det...
PurposeTo evaluate the feasibility of using a commercially available clinical dual-energy computed t...
Dual energy and 4D computed tomography (CT) seek to address some of the limitations in traditional C...
Objective: The aim of this work was to investigate whether quantitative dual-energy CT (DECT) imagin...
Purpose To evaluate the feasibility of a simultaneous single scan of regional krypton and iodine con...
To evaluate whether the contrast-to-noise ratio (CNR) of an iodinated contrast agent in virtual mono...
Evaluation of imaging performance across dual-energy CT (DECT) platforms, including dual-layer CT (D...
ObjectivesTo compare contrast-to-noise ratios (CNRs) and iodine discrimination thresholds on iodine ...
ObjectivesTo compare contrast-to-noise ratios (CNRs) and iodine discrimination thresholds on iodine ...
Dual layer CT is a new medical imaging technique, working with two layers of standard scintillator d...
none5noA new multi-energy CT for small animals is being developed at the Physics Department of the U...
none10noQuasi-monochromatic Multi-Energy CT (M.E.C.T.) imaging can produce many upgrades to polychro...
Preliminary experiments for digital subtraction computed tomography (CT) at the K-edge of iodine (33...
A new multi-energy computer tomographic system for small animals (MECT) was developed - and is now o...
Dual Energy Computed Tomography (DECT) allows performing simple material separation or differentiati...
Spectral CT differs from dual-energy CT by using a conventional X-ray tube and a photon-counting det...
PurposeTo evaluate the feasibility of using a commercially available clinical dual-energy computed t...
Dual energy and 4D computed tomography (CT) seek to address some of the limitations in traditional C...
Objective: The aim of this work was to investigate whether quantitative dual-energy CT (DECT) imagin...
Purpose To evaluate the feasibility of a simultaneous single scan of regional krypton and iodine con...
To evaluate whether the contrast-to-noise ratio (CNR) of an iodinated contrast agent in virtual mono...
Evaluation of imaging performance across dual-energy CT (DECT) platforms, including dual-layer CT (D...
ObjectivesTo compare contrast-to-noise ratios (CNRs) and iodine discrimination thresholds on iodine ...
ObjectivesTo compare contrast-to-noise ratios (CNRs) and iodine discrimination thresholds on iodine ...
Dual layer CT is a new medical imaging technique, working with two layers of standard scintillator d...