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Fluorescence Lifetime Imaging and Intravascular Ultrasound: Co-Registration Study Using Ex Vivo Human Coronaries.

, , , , , , and . IEEE Trans. Med. Imaging, 34 (1): 156-166 (2015)

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Maximum-Lesion-Detectability Reconstruction Using Penalized Maximum Likelihood., and . ISBI, page 348-351. IEEE, (2004)Direct Patlak Reconstruction From Dynamic PET Data Using the Kernel Method With MRI Information Based on Structural Similarity., , , , , and . IEEE Trans. Med. Imaging, 37 (4): 955-965 (2018)Theoretical Analysis of Penalized Maximum-Likelihood Patlak Parametric Image Reconstruction in Dynamic PET for Lesion Detection., , and . IEEE Trans. Med. Imaging, 35 (4): 1 (2016)Spatiotemporal reconstruction of list mode PET data., , , and . IEEE Trans. Med. Imaging, 21 (4): 396-404 (2002)Edge-Preserving PET Image Reconstruction Using Trust Optimization Transfer., and . IEEE Trans. Med. Imaging, 34 (4): 930-939 (2015)Generalized Algorithms for Direct Reconstruction of Parametric Images From Dynamic PET Data., and . IEEE Trans. Med. Imaging, 28 (11): 1717-1726 (2009)High-Resolution Adaptive PET Imaging., and . IPMI, volume 5636 of Lecture Notes in Computer Science, page 26-37. Springer, (2009)Regularization design for breast lesion detection in penalized maximum likelihood image reconstruction., , and . ISBI, page 626-629. IEEE, (2012)Theoretical analysis of lesion detectability in penalized maximum-likelihood patlak parametric image reconstruction using dynamic PET., , and . ISBI, page 1188-1191. IEEE, (2015)PET Image Reconstruction Using Kernel Method., and . IEEE Trans. Med. Imaging, 34 (1): 61-71 (2015)