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Quantitative comparison of automated PET volume delineation methodologies using simulated tumor lesions., , , , , , и . ISBI, стр. 653-656. IEEE, (2011)Voxel-based comparison of state-of-the-art reconstruction algorithms for 18F-FDG PET brain imaging using simulated and clinical data., , , , , и . NeuroImage, (2014)Comparison Between Parallel Hole and Rotating Slat Collimation: Analytical Noise Propagation Models., , , и . IEEE Trans. Med. Imaging, 29 (12): 2038-2052 (2010)Geometrical calibration and aperture configuration design in multi-pinhole SPECT., , , , , и . ISBI, стр. 1403-1406. IEEE, (2008)Fuzzy Statistical Unsupervised Learning Based Total Lesion Metabolic Activity Estimation in Positron Emission Tomography Images., , , , , , и . MLMI, том 7009 из Lecture Notes in Computer Science, стр. 233-240. Springer, (2011)Evaluation of Parallel Level Sets and Bowsher's Method as Segmentation-Free Anatomical Priors for Time-of-Flight PET Reconstruction., , , , , , , и . IEEE Trans. Medical Imaging, 37 (2): 590-603 (2018)Benefits Of Multi-Exposure For Hyperspectral Imaging., , , , и . WHISPERS, стр. 1-5. IEEE, (2022)Effect of Overlapping Projections on Reconstruction Image Quality in Multipinhole SPECT., , и . IEEE Trans. Med. Imaging, 27 (7): 972-983 (2008)Single and Multipinhole Collimator Design Evaluation Method for Small Animal SPECT., , , и . IEEE Trans. Med. Imaging, 27 (1): 36-46 (2008)Fisher Information-Based Evaluation of Image Quality for Time-of-Flight PET., , , , и . IEEE Trans. Med. Imaging, 29 (2): 311-321 (2010)