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Improved Microcalcification Detection for Breast Tomosynthesis Using a Penalized-Maximum-Likelihood Reconstruction Method.

, , , and . Digital Mammography / IWDM, volume 6136 of Lecture Notes in Computer Science, page 697-703. Springer, (2010)

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Development of an Ensemble of Digital Breast Object Models., , , , and . Digital Mammography / IWDM, volume 6136 of Lecture Notes in Computer Science, page 54-61. Springer, (2010)Examining the Influence of Digital Phantom Models in Virtual Imaging Trials for Tomographic Breast Imaging., and . CoRR, (2024)Relative Contributions of Anatomical and Quantum Noise in Signal Detection and Perception of Tomographic Digital Breast Images., and . IEEE Trans. Medical Imaging, 39 (11): 3321-3330 (2020)Robust Energy Calibration Technique for Photon Counting Spectral Detectors., , , and . IEEE Trans. Med. Imaging, 38 (4): 968-978 (2019)Penalized Maximum Likelihood Reconstruction for Improved Microcalcification Detection in Breast Tomosynthesis., , , and . IEEE Trans. Med. Imaging, 30 (4): 904-914 (2011)Improved Microcalcification Detection for Breast Tomosynthesis Using a Penalized-Maximum-Likelihood Reconstruction Method., , , and . Digital Mammography / IWDM, volume 6136 of Lecture Notes in Computer Science, page 697-703. Springer, (2010)Comparison of Two Methods to Develop Breast Models for Simulation of Breast Tomosynthesis and CT., , , , and . Digital Mammography / IWDM, volume 5116 of Lecture Notes in Computer Science, page 417-425. Springer, (2008)Spectral Signatures of X-ray Scatter Using Energy-Resolving Photon-Counting Detectors., and . Sensors, 19 (22): 5022 (2019)