M.Sc. Jonas Schumacher
Fraunhofer-Einrichtung für Individualisierte und Zellbasierte Medizintechnik IMTE
Monkhofer Weg 239a
23562 Lübeck
Email: | jonas.schumacher(at)imte.fraunhofer.de |
Phone: | +49 451 384448-333 |
Roles
Research Assistant
Research
Research Interests
- Magnetic Particle Imaging
- Computed Tomography
Curriculum Vitae
JONAS SCHUMACHER (née Beuke) was born in Syke, Germany in 1991. He received his Master of Science in Medical Engineering Science in 2017 from the Universität zu Lübeck, Germany. During his study he was mainly interested in medical imaging and signal processing. In 2017, he wrote his master's thesis on Magnetic Particle Imaging (MPI) at the Institute of Medical Engineering, where he has continued to work on MPI as a research assistant since 10/2017. He joined the Fraunhofer Research Institution for Individualized and Cell-Based Medical Engineering IMTE in 2020
Publications
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Simulation of a Modular Coil Unit for a Preclinical MPI Scanner, 2024, DOI: 10.18416/IJMPI.2024.2403037.
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A Novel Approach to FFL Trajectory Analysis, International Journal on Magnetic Particle Imaging IJMPI, Vol 9 No 1 Suppl 1 (2023), 2023, DOI: 10.18416/IJMPI.2023.2303074.
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Towards a Fully Integrated Preclinical Field-Free Line MPI Scanner, 2023.
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MPIMeasurements.jl: An Extensible Julia Framework for Composable Magnetic Particle Imaging Devices, International Journal on Magnetic Particle Imaging IJMPI, Vol 9 No 1 Suppl 1 (2023), 2023, DOI: 10.18416/IJMPI.2023.2303069.
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A Flexible High-Performance Signal Generation and Digitization Plattform based on Low-Cost Hardware, International Journal on Magnetic Particle Imaging, Vol 8 No 1 Suppl 1 (2022), 2022, DOI: 10.18416/IJMPI.2022.2203063.
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Verfahren zur Erfassung der magnetischen Antwort einer Verteilung magnetisierbarer Partikel auf ein magnetisches Anregungsfeld, 2022, DE 10 2020 118 102 B4.
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Comparison of Reconstruction Methods for Measured FFL Data, 2022, DOI: 10.18416/IJMPI.2022.2203061.
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Implementation and imaging with a versatile 180 mm magnetic particle imaging field generator, Journal of Magnetism and Magnetic Materials, 169509, 2022, DOI: 10.1016/j.jmmm.2022.169509.
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Recent developments in magnetic particle imaging, Journal of Magnetism and Magnetic Materials, 550, 169037, 2022, DOI: 10.1016/j.jmmm.2022.169037.
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High gradient nested Halbach system for steering magnetic particles, International Journal on Magnetic Particle Imaging, Vol 8 No 1 Suppl 1 (2022), 2022, DOI: 10.18416/IJMPI.2022.2203012.
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Magnetic particle imaging, Die Radiologie, 62(6), 496–503, 2022, DOI: 10.1007/s00117-022-01011-9.
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Highly Symmetric Receive Chain for Magnetic Particle Imaging, 2021.
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Magnetic particle imaging, In: Imaging Modalities for Biological and Preclinical Research: A Compendium, IOP Publishing, , II.8–1 to II.8, 2021, DOI: 10.1088/978-0-7503-3747-2ch12.
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A concept for a magnetic particle imaging scanner with Halbach arrays, Physics in Medicine and Biology, 65(19), 2020, DOI: 10.1088/1361-6560/ab7e7e.
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Highly symmetric filter for a fully differential receive chain, International Journal on Magnetic Particle Imaging, Vol 6 No 2 Suppl. 1 (2020), 2020, DOI: 10.18416/IJMPI.2020.2009031.
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Fully differential low noise amplifier for MPI/MPS, International Journal on Magnetic Particle Imaging, Vol 6 No 2 Suppl. 1 (2020), 2020, DOI: 10.18416/IJMPI.2020.2009006.
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Co-optimisation of send and receive coils, International Journal on Magnetic Particle Imaging, Vol 6 No 2 Suppl. 1 (2020), 2020, DOI: 10.18416/IJMPI.2020.2009037.
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A concept for an MPI scanner with Halbach arrays, International Journal on Magnetic Particle Imaging, Vol 6 No 2 Suppl. 1 (2020), 2020, DOI: 10.18416/IJMPI.2020.2009008.
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A standard procedure for implementation and automatic correction of LCC matching networks, International Journal on Magnetic Particle Imaging, Vol 6 No 2 Suppl. 1 (2020), 2020, DOI: 10.18416/IJMPI.2020.2009036.
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A Concept for an Adjustable MPI System with Permanent Magnets, 119, 2019.
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A Rabbit Sized Field-Free-Line Magnetic-Particle-Imaging Scanner - Past, Present, and Future, 239, 2019.
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Dynamic 2D Imaging with an MPI Scanner Featuring a Mechanically Rotated FFL, 5, 2019.
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A Concept for a Magnetic Particle Imaging Scanner with Halbach-Arrays, 2019.
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Combined Active and Passive Cancellation of Receive Chain Direct Feedthrough, 49, 2019.
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Verfahren zur Magnetpartikelbildgebung mit verbesserter Messdynamik, German Patent, 05/16/2019, DE 10 2018 204 311 B3.
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Halbach-Based Field-Free Line MPI Scanner, 2019.
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Excitation and Receive Unit for a Rotating Permanent Magnet Based MPI System, 113, 2018.
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Novel Field Geometry Using Two Halbach Cylinders for FFL-MPI, International Journal on Magnetic Particle Imaging, 4(1), 2018, DOI: 10.18416/IJMPI.2018.1811004.
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An Approach for Actively Cancelling Direct Feedthrough, 77, 2018.
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A Customized Highly Linear Power Resistor For Distortion Measurements in a Magnetic Particle Imaging Signal Chain, 2018.
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