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Martin Möddel
Person information
- affiliation: University Medical Center Hamburg-Eppendorf, Institute of Biomedical Imaging, Germany
Other persons with the same name
- Martin Hofmann — disambiguation page
- Martin Hofmann 0001 — LMU Munich, Institute for Informatics, Germany
- Martin Hofmann 0002 — SAP AG, Walldorf, Germany
- Martin Hofmann 0005 — Forschungszentrum Karlsruhe, Germany
- Martin Hofmann 0006 — Vanderbilt University, Nashville, TN, USA
- Martin Hofmann 0007 — University of Jena, Germany
- Martin Hofmann 0008 — University of Bamberg, Germany
- Martin Hofmann-Apitius (aka: Martin Hofmann 0009) — Fraunhofer Institute for Algorithms and Scientific Computing (SCAI), Sankt Augustin, Germany (and 1 more)
- Martin Hofmann 0010 — Volkswagen AG
- Martin Hofmann 0011 — TU Munich, Institute for Human-Machine Communication
- Martin Hofmann 0012 — Pädagogische Hochschule des Kantons St.Gallen
- Martin Hofmann 0013 — Institute of Sports Science, University of Magdeburg
- Martin Hofmann 0014 — University of Würzburg, Institute of Mathematics
- Martin Hofmann 0017 — Ruhr University Bochum, Germany
- Martin Hofmann 0018 — Braunschweig University of Technology, Germany
- Martin Hofmann 0019 — Technische Universität Ilmenau, Germany
- Martin Hofmann 0020 — University of Applied Sciences Wuerzburg-Schweinfurt, Bad Neustadt, Germany
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2020 – today
- 2024
- [c8]Lina Nawwas, Martin Möddel, Tobias Knopp:
Sparse Kaczmarz for Convergence Speed-Up in Multi-Contrast Magnetic Particle Imaging. ISBI 2024: 1-4 - 2023
- [j11]Florian Thieben, Tobias Knopp, Marija Boberg, Fynn Foerger, Matthias Graeser, Martin Möddel:
On the Receive Path Calibration of Magnetic Particle Imaging Systems. IEEE Trans. Instrum. Meas. 72: 1-15 (2023) - [i2]Marija Boberg, Tobias Knopp, Martin Möddel:
Unique Compact Representation of Magnetic Fields using Truncated Solid Harmonic Expansions. CoRR abs/2302.07591 (2023) - [i1]Fabian Mohn, Fynn Förger, Florian Thieben, Martin Möddel, Ingo Schmale, Tobias Knopp, Matthias Graeser:
Resonant Inductive Coupling Network for Human-Sized Magnetic Particle Imaging. CoRR abs/2312.15245 (2023) - 2021
- [j10]Tobias Knopp, Mirco Grosser, Matthias Graeser, Timo Gerkmann, Martin Möddel:
Efficient Joint Estimation of Tracer Distribution and Background Signals in Magnetic Particle Imaging Using a Dictionary Approach. IEEE Trans. Medical Imaging 40(12): 3568-3579 (2021) - [c7]Tobias Knopp, Mirco Grosser, Matthias Graeser, Timo Gerkmann, Martin Möddel:
Dictionary-Based Background Signal Estimation For Magnetic Particle Imaging. ISBI 2021: 1540-1543 - 2020
- [j9]Mirco Grosser, Martin Möddel, Tobias Knopp:
Using Low-Rank Tensors for the Recovery of MPI System Matrices. IEEE Trans. Computational Imaging 6: 1389-1402 (2020) - [j8]Marija Boberg, Tobias Knopp, Patryk Szwargulski, Martin Möddel:
Generalized MPI Multi-Patch Reconstruction Using Clusters of Similar System Matrices. IEEE Trans. Medical Imaging 39(5): 1347-1358 (2020) - [j7]Nadine Gdaniec, Marija Boberg, Martin Möddel, Patryk Szwargulski, Tobias Knopp:
Suppression of Motion Artifacts Caused by Temporally Recurring Tracer Distributions in Multi-Patch Magnetic Particle Imaging. IEEE Trans. Medical Imaging 39(11): 3548-3558 (2020)
2010 – 2019
- 2019
- [j6]Tobias Knopp, Martin Möddel, Florian Griese, Franziska Werner, Patryk Szwargulski, Nadine Gdaniec, Marija Boberg:
MPIFiles.jl: A Julia Package for Magnetic Particle Imaging Files. J. Open Source Softw. 4(38): 1331 (2019) - [j5]Patryk Szwargulski, Martin Möddel, Nadine Gdaniec, Tobias Knopp:
Efficient Joint Image Reconstruction of Multi-Patch Data Reusing a Single System Matrix in Magnetic Particle Imaging. IEEE Trans. Medical Imaging 38(4): 932-944 (2019) - [c6]René Werner, Dominik Weller, Johannes M. Salamon, Martin Möddel, Tobias Knopp:
Toward employing the full potential of magnetic particle imaging: exploring visualization techniques and clinical use cases for real-time 3D vascular imaging. Biomedical Applications in Molecular, Structural, and Functional Imaging 2019: 109531V - 2018
- [c5]Patryk Szwargulski, Nadine Gdaniec, Matthias Graeser, Martin Möddel, Florian Griese, Tobias Knopp:
Abstract: Erweiterung des Bildgebungsbereiches bei der Magnetpartikelbildgebung durch externe axiale Verschiebungen. Bildverarbeitung für die Medizin 2018: 202 - [c4]Patryk Szwargulski, Nadine Gdaniec, Matthias Graeser, Martin Möddel, Florian Griese, Tobias Knopp:
Enlarging the field of view in magnetic particle imaging using a moving table approach. Biomedical Applications in Molecular, Structural, and Functional Imaging 2018: 105781G - 2017
- [j4]Leonard Schmiester, Martin Möddel, Wolfgang Erb, Tobias Knopp:
Direct Image Reconstruction of Lissajous-Type Magnetic Particle Imaging Data Using Chebyshev-Based Matrix Compression. IEEE Trans. Computational Imaging 3(4): 671-681 (2017) - [j3]Martin Storath, Christina Brandt, Martin Hofmann, Tobias Knopp, Johannes Salamon, Alexander Weber, Andreas Weinmann:
Edge Preserving and Noise Reducing Reconstruction for Magnetic Particle Imaging. IEEE Trans. Medical Imaging 36(1): 74-85 (2017) - [j2]Nadine Gdaniec, Matthias Schlüter, Martin Möddel, Michael G. Kaul, Kannan M. Krishnan, Alexander Schlaefer, Tobias Knopp:
Detection and Compensation of Periodic Motion in Magnetic Particle Imaging. IEEE Trans. Medical Imaging 36(7): 1511-1521 (2017) - 2016
- [j1]Kolja Them, Michael G. Kaul, Caroline Jung, Martin Hofmann, Tobias Mummert, Franziska Werner, Tobias Knopp:
Sensitivity Enhancement in Magnetic Particle Imaging by Background Subtraction. IEEE Trans. Medical Imaging 35(3): 893-900 (2016) - [c3]Martin Hofmann, Kevin Bizon, Alexander Schlaefer, Tobias Knopp:
Subpixelgenaue Positionsbestimmung in Magnetic-Particle-Imaging. Bildverarbeitung für die Medizin 2016: 20-25 - [c2]Franziska Werner, Caroline Jung, Martin Hofmann, Johannes Salamon, René Werner, Dennis Säring, Michael G. Kaul, Kolja Them, Oliver M. Weber, Tobias Mummert, Gerhard Adam, Harald Ittrich, Tobias Knopp:
Geometrieplanung und Bildregistrierung mittels bimodaler Fiducial-Marker für Magnetic Particle Imaging. Bildverarbeitung für die Medizin 2016: 128-133 - [c1]Caroline Jung, Johannes Salamon, Martin Hofmann, Michael G. Kaul, Gerhard Adam, Harald Ittrich, Tobias Knopp:
MPI as high temporal resolution imaging technique for in vivo bolus tracking of Ferucarbotran in mouse model. Biomedical Applications in Molecular, Structural, and Functional Imaging 2016: 97880V
Coauthor Index
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