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First Demonstration of Multiplexed X-Ray Fluorescence Computed Tomography (XFCT) Imaging.

, , , , , and . IEEE Trans. Medical Imaging, 32 (2): 262-267 (2013)

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First Demonstration of Multiplexed X-Ray Fluorescence Computed Tomography (XFCT) Imaging., , , , , and . IEEE Trans. Medical Imaging, 32 (2): 262-267 (2013)Investigation of X-ray Fluorescence Computed Tomography (XFCT) and K-Edge Imaging., , , and . IEEE Trans. Medical Imaging, 31 (8): 1620-1627 (2012)X-Ray Luminescence and X-Ray Fluorescence Computed Tomography: New Molecular Imaging Modalities., , , and . IEEE Access, (2014)Order of Magnitude Sensitivity Increase in X-ray Fluorescence Computed Tomography (XFCT) Imaging With an Optimized Spectro-Spatial Detector Configuration: Theory and Simulation., , , and . IEEE Trans. Medical Imaging, 33 (5): 1119-1128 (2014)X-Ray Fluorescence Computed Tomography Induced by Photon, Electron, and Proton Beams., and . IEEE Trans. Med. Imaging, 38 (12): 2735-2743 (2019)Reducing the Human Effort in Developing PET-CT Registration., , , , , and . CoRR, (2019)Optimizing Novel Inorganic Scintillation Detectors for Applications in Medical Physics., , , and . IEEE SENSORS, page 1-4. IEEE, (2020)FlowNet-PET: Unsupervised Learning to Perform Respiratory Motion Correction in PET Imaging., , , , , and . CoRR, (2022)Optimized Detector Angular Configuration Increases the Sensitivity of X-ray Fluorescence Computed Tomography (XFCT)., , , and . IEEE Trans. Medical Imaging, 34 (5): 1140-1147 (2015)Real-time dosimetry of ultrahigh dose-rate x-ray beams using scintillation detectors., , , , and . IEEE SENSORS, page 1-4. IEEE, (2021)