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Frédéric Noo
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2020 – today
- 2023
- [j16]Jingyan Xu, Frédéric Noo:
Linearized Analysis of Noise and Resolution for DL-Based Image Generation. IEEE Trans. Medical Imaging 42(3): 647-660 (2023) - [c9]John M. Hoffman, Frédéric Noo, Michael F. McNitt-Gray:
An analytic, physics-based approach to scoring emphysema in lung CT patients. Computer-Aided Diagnosis 2023 - 2020
- [j15]Jingyan Xu, Frédéric Noo:
A Robust Regularizer for Multiphase CT. IEEE Trans. Medical Imaging 39(7): 2327-2338 (2020)
2010 – 2019
- 2018
- [j14]Jingyan Xu, Frédéric Noo, Benjamin M. W. Tsui:
A Direct Algorithm for Optimization Problems With the Huber Penalty. IEEE Trans. Medical Imaging 37(1): 162-172 (2018) - [c8]Cristian Atria, Lisa Last, Nathan Packard, Frédéric Noo:
Cone beam tomosynthesis fluoroscopy: a new approach to 3D image guidance. Image-Guided Procedures 2018: 105762V - 2016
- [c7]John M. Hoffman, Frédéric Noo, K. McMillan, S. Young, Michael F. McNitt-Gray, Eloisa Rodriguez-Mena:
Assessing nodule detection on lung cancer screening CT: the effects of tube current modulation and model observer selection on detectability maps. Image Perception, Observer Performance, and Technology Assessment 2016: 97870Q - [c6]Frédéric Noo, Katharina Hahn, Z. Guo:
Importance of the grayscale in early assessment of image quality gains with iterative CT reconstruction. Image Perception, Observer Performance, and Technology Assessment 2016: 978712 - 2015
- [j13]Zhicong Yu, Andreas K. Maier, Günter Lauritsch, Florian Vogt, Manfred Schonborn, Christoph Kohler, Joachim Hornegger, Frédéric Noo:
Axially Extended-Volume C-Arm CT Using a Reverse Helical Trajectory in the Interventional Room. IEEE Trans. Medical Imaging 34(1): 203-215 (2015) - [j12]Adam Wunderlich, Frédéric Noo, Brandon D. Gallas, Marta E. Heilbrun:
Exact Confidence Intervals for Channelized Hotelling Observer Performance in Image Quality Studies. IEEE Trans. Medical Imaging 34(2): 453-464 (2015) - 2012
- [j11]Stefan Hoppe, Joachim Hornegger, Frank Dennerlein, Günter Lauritsch, Frédéric Noo:
Accurate image reconstruction using real C-arm data from a Circle-plus-arc trajectory. Int. J. Comput. Assist. Radiol. Surg. 7(1): 73-86 (2012) - [j10]Adam Wunderlich, Frédéric Noo:
A Nonparametric Procedure for Comparing the Areas Under Correlated LROC Curves. IEEE Trans. Medical Imaging 31(11): 2050-2061 (2012) - 2010
- [j9]Adam Wunderlich, Frédéric Noo:
Band-Restricted Estimation of Noise Variance in Filtered Backprojection Reconstructions Using Repeated Scans. IEEE Trans. Medical Imaging 29(5): 1097-1113 (2010)
2000 – 2009
- 2009
- [j8]Adam Wunderlich, Frédéric Noo:
Estimation of Channelized Hotelling Observer Performance With Known Class Means or Known Difference of Class Means. IEEE Trans. Medical Imaging 28(8): 1198-1207 (2009) - 2008
- [j7]Frank Dennerlein, Frédéric Noo, H. Schondube, Günter Lauritsch, Joachim Hornegger:
A Factorization Approach for Cone-Beam Reconstruction on a Circular Short-Scan. IEEE Trans. Medical Imaging 27(7): 887-896 (2008) - 2005
- [j6]Jed D. Pack, Frédéric Noo, Rolf Clackdoyle:
Cone-beam reconstruction using the backprojection of locally filtered projections. IEEE Trans. Medical Imaging 24(1): 70-85 (2005) - 2004
- [j5]Frédéric Noo, Michel Defrise, Hiroyuki Kudo:
General reconstruction theory for multislice X-ray computed tomography with a gantry tilt. IEEE Trans. Medical Imaging 23(9): 1109-1116 (2004) - [c5]Jed D. Pack, Frédéric Noo:
Dynamic computed tomography with known motion field. Image Processing 2004 - 2002
- [c4]Frédéric Noo, Dominic J. Heuscher:
Image reconstruction from cone-beam data on a circular short-scan. Image Processing 2002 - 2001
- [c3]Jean-Marc Wagner, Frédéric Noo, Rolf Clackdoyle:
3-D image reconstruction from exponential X-ray projections using Neumann series. ICASSP 2001: 2017-2020 - [c2]Frédéric Noo, Rolf Clackdoyle:
Sampling strategies and resolution in limited data cone-beam tomography. ICASSP 2001: 2025-2028 - 2000
- [j4]Stefan Schaller, Frédéric Noo, F. Sauer, K. C. Tam, Günter Lauritsch, Thomas Flohr, Siemens Erlangen:
Exact Radon rebinning algorithm for the long object problem in helical cone-beam CT. IEEE Trans. Medical Imaging 19(5): 361-375 (2000) - [j3]Hiroyuki Kudo, Frédéric Noo, Michel Defrise:
Quasi-Exact Filtered Backprojection Algorithm for Long-Object Problem in Helical Cone-Beam Tomography. IEEE Trans. Medical Imaging 19(9): 902-921 (2000)
1990 – 1999
- 1998
- [j2]Frédéric Noo, Michel Defrise, Rolf Clack:
Direct reconstruction of cone-beam data acquired with a vertex path containing a circle. IEEE Trans. Image Process. 7(6): 854-867 (1998) - 1996
- [j1]Frédéric Noo, C. Bernard, F. X. Litt, P. Marchot:
A comparison between filtered backprojection algorithm and direct algebraic method in fan beam CT. Signal Process. 51(3): 191-199 (1996) - [c1]Frédéric Noo, Michel Defrise, Rolf Clack, E. J. Roney, T. A. White, S. G. Galbraith:
Stable and efficient shift-variant algorithm for circle-plus-lines orbits in cone-beam CT. ICIP (3) 1996: 539-542
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