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Dirk Müller 0001
Person information
- affiliation: Philips GmbH Healthcare - Imaging Systems, Hamburg, Germany
- affiliation (former): TU München, Germany
Other persons with the same name
- Dirk Müller (aka: Dirk Mueller) — disambiguation page
- Dirk Müller 0002 — Hochschule für Technik und Wirtschaft Dresden, Germany (and 1 more)
- Dirk Müller 0003 — University of Bonn, Research Institute for Discrete Mathematics, Bonn, Germany
- Dirk Müller 0004 — Insilico Biotechnology AG, Stuttgart, Germany
- Dirk Müller 0005 — RWTH Aachen University, Institute for Energy Efficient Buildings and Indoor Climate, Germany
- Dirk Müller 0006 — University of Siegen, Germany
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2010 – 2019
- 2013
- [c21]Cristian Lorenz, Thomas Netsch, Tobias Klinder, Dirk Müller, Thomas Baum, Jan S. Bauer, Peter B. Noël:
Change assessment for CT spine imaging. ISBI 2013: 97-100 - 2011
- [c20]Mona Frommert, Irina Sidorenko, Jan S. Bauer, Dirk Müller, Ernst J. Rummeny, Felix Eckstein, Roberto A. Monetti, Christoph Räth:
Amplitude remapping as a step towards standardizing the analysis of MR-images. Medical Imaging: Image Processing 2011: 79621J - 2010
- [c19]Christoph Räth, Dirk Müller, Irina Sidorenko, Roberto A. Monetti, Jan S. Bauer:
Assessing texture measures with respect to their sensitivity to scale-dependent higher order correlations in medical images using surrogates. Medical Imaging: Image Processing 2010: 762354
2000 – 2009
- 2009
- [c18]Christoph Räth, Jan S. Bauer, Dirk Müller, Irina Sidorenko, Thomas M. Link, Roberto A. Monetti:
Comparing the sensitivity of wavelets, Minkowski functionals, and scaling indices to higher order correlations in MR images of the trabecular bone using surrogates. Medical Imaging: Image Processing 2009: 72590D - 2008
- [c17]Roberto A. Monetti, Jan S. Bauer, Dirk Müller, Ernst J. Rummeny, Thomas M. Link, Sharmila Majumdar, Maiko Matsuura, Felix Eckstein, Irina Sidorenko, Christoph Räth:
Studying the effect of noise on the performance of 2D and 3D texture measures for quantifying the trabecular bone structure as obtained with high resolution MR imaging at 3 tesla. Medical Imaging: Image Processing 2008: 69144U - [c16]Irina N. Sidorenko, Jan S. Bauer, Roberto A. Monetti, Dirk Müller, Ernst J. Rummeny, Felix Eckstein, Christoph Räth:
Comparison and combination of scaling index method and Minkowski functionals in the analysis of high resolution magnetic resonance images of the distal radius in vitro. Medical Imaging: Image Processing 2008: 69144V - 2007
- [c15]Roberto A. Monetti, Jan S. Bauer, Dirk Müller, Ernst J. Rummeny, Maiko Matsuura, Felix Eckstein, Thomas M. Link, Christoph Räth:
Application of the scaling index method to µCT images of human trabecular bone for the characterization of biomechanical strength. Medical Imaging: Image Processing 2007: 65124H - [c14]Christoph W. Räth, Jan S. Bauer, Dirk Müller, Ernst J. Rummeny, Thomas M. Link, Sharmila Majumdar, Felix Eckstein, Roberto A. Monetti:
Analyzing µCT images of bone specimen with wavelets and scaling indices: Which texture measure does better to depict the trabecular bone structure? Medical Imaging: Image Processing 2007: 65124B - 2006
- [c13]Christoph W. Räth, Dirk Müller, Thomas M. Link, Holger F. Böhm, Roberto A. Monetti:
Quantifying changes in the bone microarchitecture using Minkowski-functionals and scaling vectors: a comparative study. Medical Imaging: Image Processing 2006: 61440C - [c12]Christoph W. Räth, Dirk Müller, Ernst J. Rummeny, Thomas M. Link, Mika Vogel, Hartmut Koenig, Holger F. Böhm, Roberto A. Monetti:
Optimizing texture measures quantifying bone structures as well as MR-sequences at 3 Tesla: an integrative statistical approach. Medical Imaging: Image Processing 2006: 61440E - 2005
- [c11]Holger F. Böhm, Ferdinand Jamitzki, Roberto A. Monetti, Dirk Müller, Alexandros A. Linaroudis, Reiner Hegerl, Ernst J. Rummeny, Christoph W. Räth:
Morphological filtering based on the Minkowski functionals in 3D for segmentation of macromolecular structures in intact eukaryotic cells depicted by cryo-electron tomography. Medical Imaging: Image Processing 2005 - [c10]Holger F. Böhm, Thomas M. Link, Roberto A. Monetti, Dirk Müller, Ernst J. Rummeny, Christoph W. Räth:
Performance of linear and nonlinear texture measures in 2D and 3D for monitoring architectural changes in osteoporosis using computer-generated models of trabecular bone. Medical Imaging: Image Processing 2005 - [c9]Roberto A. Monetti, Holger F. Böhm, Dirk Müller, Ernst J. Rummeny, Thomas M. Link, Christoph Räth:
Structural analysis of human proximal femur for the prediction of biomechanical strength in vitro: the locally adapted scaling vector method. Medical Imaging: Image Processing 2005 - [c8]Christoph W. Räth, Dirk Müller, Holger F. Böhm, Ernst J. Rummeny, Thomas M. Link, Roberto A. Monetti:
Improving the textural characterization of trabecular bone structure to quantify its changes: the locally adapted scaling vector method. Medical Imaging: Image Processing 2005 - 2004
- [c7]Dirk Müller, Roberto A. Monetti, Holger F. Böhm, Jan S. Bauer, Ernst J. Rummeny, Thomas M. Link, Christoph W. Räth:
The 3D-based scaling index algorithm to optimize structure analysis of trabecular bone in postmenopausal women with and without osteoporotic spine fractures. Medical Imaging: Image Processing 2004 - [c6]Holger F. Böhm, Thomas M. Link, Roberto A. Monetti, Dirk Müller, Ernst J. Rummeny, David Newitt, Sharmila Majumdar, Christoph W. Räth:
Application of the Minkowski functionals in 3D to high-resolution MR images of trabecular bone: prediction of the biomechanical strength by nonlinear topological measures. Medical Imaging: Image Processing 2004 - [c5]Roberto A. Monetti, Holger F. Böhm, Dirk Müller, Ernst J. Rummeny, Thomas M. Link, Christoph W. Räth:
Assessing the biomechanical strength of trabecular bone in vitro using 3D anisotropic nonlinear texture measures: the scaling vector method. Medical Imaging: Image Processing 2004 - [c4]Christoph W. Räth, Roberto A. Monetti, Dirk Müller, Holger F. Böhm, Ernst J. Rummeny, Thomas M. Link:
Comparing nonlinear texture measures for quantifying trabecular bone structures using surrogates. Medical Imaging: Image Processing 2004 - 2003
- [c3]Holger F. Böhm, Christoph Räth, Roberto A. Monetti, Dirk Müller, David Newitt, Sharmila Majumdar, Ernst J. Rummeny, Thomas M. Link:
Application of the standard Hough-transform to high resolution MRI of human trabecular bone to predict mechanical strength. Medical Imaging: Image Processing 2003 - [c2]Roberto A. Monetti, Holger F. Böhm, Dirk Müller, David Newitt, Sharmila Majumdar, Ernst J. Rummeny, Thomas M. Link, Christoph Räth:
Scaling index method: a novel nonlinear technique for the analysis of high-resolution MRI of human bones. Medical Imaging: Image Processing 2003 - [c1]Christoph Räth, Roberto A. Monetti, Dirk Müller, Holger F. Böhm, Ernst J. Rummeny, Thomas M. Link:
Analyzing and selecting texture measures for quantifying trabecular bone structures using surrogates. Medical Imaging: Image Processing 2003
Coauthor Index
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