Iodine quantification with dual-energy CT: phantom study and preliminary experience with renal masses.
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Accuracy of dual-energy computed tomography for the measurement of iodine concentration using cardiac CT protocols: validation in a phantom model.Distinguishing enhancing from nonenhancing renal masses with dual-source dual-energy CT: iodine quantification versus standard enhancement measurements.Low enhancing papillary renal cell carcinoma diagnosed by using dual energy computerized tomography: a case report and review of literature.Dual-energy CT after radiofrequency ablation of liver, kidney, and lung lesions: a review of features.Noise Suppression for Dual-Energy CT Through Entropy Minimization.Abdominal Imaging with Contrast-enhanced Photon-counting CT: First Human ExperienceMonitoring targeted therapy using dual-energy CT: semi-automatic RECIST plus supplementary functional information by quantifying iodine uptake of melanoma metastases.Iodine quantification with dual-energy CT: phantom study and preliminary experience with VX2 residual tumour in rabbits after radiofrequency ablation.A Literature Review of Renal Surgical Anatomy and Surgical Strategies for Partial Nephrectomy.Evaluation of hyperdense renal lesions incidentally detected on single-phase post-contrast CT using dual-energy CT.Dual-energy computed tomography applications in uroradiology.Dual-energy CT of the urinary tract.Dual-energy CT of the abdomen.Comparison of dual-energy CT-derived iodine content and iodine overlay of normal, inflammatory and metastatic squamous cell carcinoma cervical lymph nodes.Dual energy MDCT assessment of renal lesions: an overview.Recent developments of dual-energy CT in oncology.Quantitative myocardial perfusion with stress dual-energy CT: iodine concentration differences between normal and ischemic or necrotic myocardium. Initial experience.Imaging the renal lesion with dual-energy multidetector CT and multi-energy applications in clinical practice: what can it truly do for you?Microscopic dual-energy CT (microDECT): a flexible tool for multichannel ex vivo 3D imaging of biological specimens.An effective noise reduction method for multi-energy CT images that exploit spatio-spectral features.Accuracy of dual-energy computed tomography for the quantification of iodine in a soft tissue-mimicking phantom.Iodine concentration calculated by dual-energy computed tomography (DECT) as a functional parameter to evaluate thyroid metabolism in patients with hyperthyroidism.Accuracy of iodine quantification using dual energy CT in latest generation dual source and dual layer CT.Spectral performance of a whole-body research photon counting detector CT: quantitative accuracy in derived image sets.Dual-energy CT workflow: multi-institutional consensus on standardization of abdominopelvic MDCT protocols.Accuracy of the raw-data-based effective atomic numbers and monochromatic CT numbers for contrast medium with a dual-energy CT technique.Comparison of arterial input functions measured from ultra-fast dynamic contrast enhanced MRI and dynamic contrast enhanced computed tomography in prostate cancer patients.Assessment of quantification accuracy and image quality of a full-body dual-layer spectral CT system.Development of a dual-energy computed tomography quality control program: characterization of scanner response and definition of relevant parameters for a fast kvp switching dect system.Combined iterative reconstruction and image-domain decomposition for dual energy CT using total-variation regularization.Iterative image-domain decomposition for dual-energy CT.Analysis of dual energy spectral CT and pathological grading of clear cell renal cell carcinoma (ccRCC).Quantitative iodine content threshold for discrimination of renal cell carcinomas using rapid kV-switching dual-energy CT.Quantification of Iodine Concentration Using Single-Source Dual-Energy Computed Tomography in a Calf Liver.Interdependencies of acquisition, detection, and reconstruction techniques on the accuracy of iodine quantification in varying patient sizes employing dual-energy CT.
P2860
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P2860
Iodine quantification with dual-energy CT: phantom study and preliminary experience with renal masses.
description
2011 nî lūn-bûn
@nan
2011年の論文
@ja
2011年学术文章
@wuu
2011年学术文章
@zh
2011年学术文章
@zh-cn
2011年学术文章
@zh-hans
2011年学术文章
@zh-my
2011年学术文章
@zh-sg
2011年學術文章
@yue
2011年學術文章
@zh-hant
name
Iodine quantification with dua ...... experience with renal masses.
@en
Iodine quantification with dua ...... experience with renal masses.
@nl
type
label
Iodine quantification with dua ...... experience with renal masses.
@en
Iodine quantification with dua ...... experience with renal masses.
@nl
prefLabel
Iodine quantification with dua ...... experience with renal masses.
@en
Iodine quantification with dua ...... experience with renal masses.
@nl
P2093
P356
P1476
Iodine quantification with dua ...... experience with renal masses.
@en
P2093
Alec J Megibow
Benjamin A Cohen
Christianne Leidecker
Michael Macari
Ramya Srinivasan
P304
P356
10.2214/AJR.10.5541
P407
P577
2011-06-01T00:00:00Z