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Development and Testing of a Single Frequency Terahertz Imaging System for Breast Cancer Detection.

, , , , , , and . IEEE J. Biomed. Health Informatics, 17 (4): 785-797 (2013)

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Noise Characterization of Block-Iterative Reconstruction Algorithm: I. Theory., , and . IEEE Trans. Med. Imaging, 19 (4): 261-270 (2000)Noise characterization of block-iterative reconstruction algorithms: II. Monte Carlo simulations., , and . IEEE Trans. Med. Imaging, 24 (1): 112-121 (2005)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)Low-Dose Contrast-Enhanced Breast CT Using Spectral Shaping Filters: An Experimental Study., and . IEEE Trans. Med. Imaging, 36 (12): 2417-2423 (2017)Development and Testing of a Single Frequency Terahertz Imaging System for Breast Cancer Detection., , , , , , and . IEEE J. Biomed. Health Informatics, 17 (4): 785-797 (2013)Impact of axial collimation on hybrid PET image quality., and . ISBI, page 549-552. IEEE, (2002)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)Rapid Generation of Structured Physical Phantoms for Mammography and Digital Breast Tomosynthesis., , and . Digital Mammography / IWDM, volume 9699 of Lecture Notes in Computer Science, page 654-659. Springer, (2016)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)Penalized Maximum Likelihood Reconstruction for Improved Microcalcification Detection in Breast Tomosynthesis., , , and . IEEE Trans. Med. Imaging, 30 (4): 904-914 (2011)