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Titlebook: Dual-Energy CT in Cardiovascular Imaging; Patricia M. Carrascosa,Ricardo C. Cury,Jonathon A. Book 2015 Springer International Publishing S

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楼主: Gullet
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Technical Aspects of DECT with Dual Layer Detectorsuisition of two spectrally distinct data sets, dual energy CT (DECT), can be achieved in a clinical setting using either a dual x-ray source system, or rapid tube potential switching with a single x-ray source. A recent innovation permitting DECT acquisition is development of a spectral CT detector,
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Rapid kV Switching Dual-Energy CT Imagingn process. As such, tomographic images depict merely the differences in x-ray attenuation between different materials over the entire energy spectrum which results in suboptimal material differentiation. Dual-energy CT is a pseudo x-ray energy resolving tomographic technique, where two x-ray beams w
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Cardiovascular CTA: Contrast, Concepts, Protocols. Spectral imaging and the generation of low energy monochromatic imaging and material-specific datasets may contribute in a significant reduction in iodinated contrast volume during vascular computed tomography angiographies without hampering image quality or interpretability.
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Dual-Energy CT in Thoracic Imaging perfusion. Additionally, pulmonary ventilation can be assessed using inhaled contrast agents. This functional information is obtained along with the high-resolution anatomical information CT provides. Visualization of iodine uptake has also been investigated in thoracic oncologic imaging; here, it
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Abdominal Imaging Dual-Energy CT Applicationsanning with two different energies, material decomposition is now possible on the basis of their energy dependent attenuation profile. Improvements in the iodine conspicuity on processed low energy virtual monochromatic (VMC) images and the iodine maps can benefit lesion detection and characterizati
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Technical Advancements in Dual Energyition are constantly being developed and current technologies are being refined. The demands of the field of cardiac radiology are such that improvements in image quality as well as a push towards using CT for tissue characterization are being pursued with vigor. This chapter aims to discuss the var
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Myocardial Perfusion by Dual Energy CTe risk of CAD, with a high diagnostic accuracy and an excellent negative predictive value. When a coronary stenosis is present, it’s hemodynamical relevance needs to be determined in order to facilitate the appropriate therapeutic decision. CCTA per se is a poor predictor of the physiologic relevanc
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