| For: | Moser E. Ultra-high-field magnetic resonance: Why and when? World J Radiol 2010; 2(1): 37-40 [PMID: 21160738 DOI: 10.4329/wjr.v2.i1.37] |
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| URL: | https://www.wjgnet.com/1949-8470/full/v2/i1/37.htm |
| Number | Citing Articles |
| 1 |
Quanyue Liu, Sangjin Lee, Kibum Choi, Seungyong Hahn. Minimum Volume Optimal Design Method of Hybrid MRI Magnet. IEEE Transactions on Applied Superconductivity 2021; 31(5) doi: 10.1109/TASC.2021.3066325
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| 2 |
Sajad Hosseinnezhadian, Roberta Frass-Kriegl, Sigrun Goluch-Roat, Michael Pichler, Jürgen Sieg, Martin Vít, Marie Poirier-Quinot, Luc Darrasse, Ewald Moser, Jean-Christophe Ginefri, Elmar Laistler. A flexible 12-channel transceiver array of transmission line resonators for 7 T MRI. Journal of Magnetic Resonance 2018; 296 doi: 10.1016/j.jmr.2018.08.013
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| 3 |
Roberta Kriegl, Jean‐Christophe Ginefri, Marie Poirier‐Quinot, Luc Darrasse, Sigrun Goluch, Andre Kuehne, Ewald Moser, Elmar Laistler. Novel inductive decoupling technique for flexible transceiver arrays of monolithic transmission line resonators. Magnetic Resonance in Medicine 2015; 73(4) doi: 10.1002/mrm.25260
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| 4 |
Mark E. Ladd, Peter Bachert, Martin Meyerspeer, Ewald Moser, Armin M. Nagel, David G. Norris, Sebastian Schmitter, Oliver Speck, Sina Straub, Moritz Zaiss. Pros and cons of ultra-high-field MRI/MRS for human application. Progress in Nuclear Magnetic Resonance Spectroscopy 2018; 109 doi: 10.1016/j.pnmrs.2018.06.001
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| 5 |
Lena Nohava, Jean-Christophe Ginefri, Georges Willoquet, Elmar Laistler, Roberta Frass-Kriegl. Perspectives in Wireless Radio Frequency Coil Development for Magnetic Resonance Imaging. Frontiers in Physics 2020; 8 doi: 10.3389/fphy.2020.00011
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| 6 |
Joel Garcia, Jaladhar Neelavalli, E. Mark Haacke, Matthew J. Allen. EuII-containing cryptates as contrast agents for ultra-high field strength magnetic resonance imaging. Chemical Communications 2011; 47(48) doi: 10.1039/c1cc15219j
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| 7 |
Boel Hansson, Karin Markenroth Bloch, Titti Owman, Markus Nilsson, Jimmy Lätt, Johan Olsrud, Isabella M. Björkman‐Burtscher. Subjectively Reported Effects Experienced in an Actively Shielded 7T MRI: A Large‐Scale Study. Journal of Magnetic Resonance Imaging 2020; 52(4) doi: 10.1002/jmri.27139
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| 8 |
Patrick Orth, Carolin Peifer, Lars Goebel, Magali Cucchiarini, Henning Madry. Comprehensive analysis of translational osteochondral repair: Focus on the histological assessment. Progress in Histochemistry and Cytochemistry 2015; 50(3) doi: 10.1016/j.proghi.2015.10.001
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| 9 |
Lena Nohava, Raphaela Czerny, Sigrun Roat, Michael Obermann, Andre Kuehne, Roberta Frass-Kriegl, Jacques Felblinger, Jean-Christophe Ginefri, Elmar Laistler. Flexible Multi-Turn Multi-Gap Coaxial RF Coils: Design Concept and Implementation for Magnetic Resonance Imaging at 3 and 7 Tesla. IEEE Transactions on Medical Imaging 2021; 40(4) doi: 10.1109/TMI.2021.3051390
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| 10 |
Martin Meyerspeer, Simon Robinson, Christine I. Nabuurs, Tom Scheenen, Adrian Schoisengeier, Ewald Unger, Graham J. Kemp, Ewald Moser. Comparing localized and nonlocalized dynamic 31P magnetic resonance spectroscopy in exercising muscle at 7T. Magnetic Resonance in Medicine 2012; 68(6) doi: 10.1002/mrm.24205
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| 11 |
Ewald Moser, Elmar Laistler, Franz Schmitt, Georg Kontaxis. Ultra-High Field NMR and MRI—The Role of Magnet Technology to Increase Sensitivity and Specificity. Frontiers in Physics 2017; 5 doi: 10.3389/fphy.2017.00033
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| 12 |
Bernhard Gruber, Robert Rehner, Elmar Laistler, Stephan Zink. Anatomically Adaptive Coils for MRI—A 6-Channel Array for Knee Imaging at 1.5 Tesla. Frontiers in Physics 2020; 8 doi: 10.3389/fphy.2020.00080
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| 13 |
M. Malet-Martino, U. Holzgrabe. NMR techniques in biomedical and pharmaceutical analysis. Journal of Pharmaceutical and Biomedical Analysis 2011; 55(1) doi: 10.1016/j.jpba.2010.12.023
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| 14 |
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| 15 |
Giuseppe Ruello, Riccardo Lattanzi. A Physical Framework to Interpret the Effects of High Permittivity Materials on Radiofrequency Coil Performance in Magnetic Resonance Imaging. IEEE Transactions on Biomedical Engineering 2022; 69(11) doi: 10.1109/TBME.2022.3165763
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| 16 |
Albrecht Ingo Schmid, Kiril Schewzow, Georg Bernd Fiedler, Sigrun Goluch, Elmar Laistler, Michael Wolzt, Ewald Moser, Martin Meyerspeer. Exercising calf muscle changes correlate with pH, PCr recovery and maximum oxidative phosphorylation. NMR in Biomedicine 2014; 27(5) doi: 10.1002/nbm.3092
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| 17 |
Sigrun Goluch, Andre Kuehne, Martin Meyerspeer, Roberta Kriegl, Albrecht I. Schmid, Georg B. Fiedler, Tim Herrmann, Johannes Mallow, Suk‐Min Hong, Zang‐Hee Cho, Johannes Bernarding, Ewald Moser, Elmar Laistler. A form‐fitted three channel 31P, two channel 1H transceiver coil array for calf muscle studies at 7 T. Magnetic Resonance in Medicine 2015; 73(6) doi: 10.1002/mrm.25339
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| 18 |
Akhila N. W. Kuda-Wedagedara, Matthew J. Allen. Enhancing magnetic resonance imaging with contrast agents for ultra-high field strengths. The Analyst 2014; 139(18) doi: 10.1039/C4AN00990H
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| 19 |
Christopher T. Rodgers, William T. Clarke, Carl Snyder, J. Thomas Vaughan, Stefan Neubauer, Matthew D. Robson. Human cardiac 31P magnetic resonance spectroscopy at 7 tesla. Magnetic Resonance in Medicine 2014; 72(2) doi: 10.1002/mrm.24922
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| 20 |
Philip Benjamin, Olivia Viessmann, Andrew D. MacKinnon, Peter Jezzard, Hugh S. Markus. 7 Tesla MRI in Cerebral Small Vessel Disease. International Journal of Stroke 2015; 10(5) doi: 10.1111/ijs.12490
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| 21 |
Lars Goebel, Andreas Müller, Arno Bücker, Henning Madry. High resolution MRI imaging at 9.4 Tesla of the osteochondral unit in a translational model of articular cartilage repair. BMC Musculoskeletal Disorders 2015; 16(1) doi: 10.1186/s12891-015-0543-0
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| 22 |
Carlotta Ianniello, Jacco A. de Zwart, Qi Duan, Cem M. Deniz, Leeor Alon, Jae‐Seung Lee, Riccardo Lattanzi, Ryan Brown. Synthesized tissue‐equivalent dielectric phantoms using salt and polyvinylpyrrolidone solutions. Magnetic Resonance in Medicine 2018; 80(1) doi: 10.1002/mrm.27005
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| 23 |
Martin Meyerspeer, Tom Scheenen, Albrecht Ingo Schmid, Thomas Mandl, Ewald Unger, Ewald Moser. Semi-LASER localized dynamic31P magnetic resonance spectroscopy in exercising muscle at ultra-high magnetic field. Magnetic Resonance in Medicine 2011; 65(5) doi: 10.1002/mrm.22730
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| 24 |
Ewald Moser, Martin Meyerspeer, Florian Ph. S. Fischmeister, Günther Grabner, Herbert Bauer, Siegfried Trattnig. Windows on the Human Body – in Vivo High-Field Magnetic Resonance Research and Applications in Medicine and Psychology. Sensors 2010; 10(6) doi: 10.3390/s100605724
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| 25 |
Boel Hansson, Peter Höglund, Karin Markenroth Bloch, Markus Nilsson, Johan Olsrud, Jonna Wilén, Isabella M. Björkman‐Burtscher. Short‐term effects experienced during examinations in an actively shielded 7 T MR. Bioelectromagnetics 2019; 40(4) doi: 10.1002/bem.22189
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| 26 |
Hassan Bagher-Ebadian, Ramesh Paudyal, Tavarekere N. Nagaraja, Richard L. Croxen, Joseph D. Fenstermacher, James R. Ewing. MRI estimation of gadolinium and albumin effects on water proton. NeuroImage 2011; 54 doi: 10.1016/j.neuroimage.2010.05.032
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| 27 |
Soham S. More, Xiaoliang Zhang. Ultrashort Echo Time and Zero Echo Time MRI and Their Applications at High Magnetic Fields: A Literature Survey. Investigative Magnetic Resonance Imaging 2024; 28(4) doi: 10.13104/imri.2024.0009
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| 28 |
L. Goebel, D. Zurakowski, A. Müller, D. Pape, M. Cucchiarini, H. Madry. 2D and 3D MOCART scoring systems assessed by 9.4 T high-field MRI correlate with elementary and complex histological scoring systems in a translational model of osteochondral repair. Osteoarthritis and Cartilage 2014; 22(10) doi: 10.1016/j.joca.2014.05.027
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| 29 |
Wieslaw L. Nowinski, Fiftarina Puspitasaari, Ihar Volkau, Yevgen Marchenko, Michael V. Knopp. Comparison of Magnetic Resonance Angiography Scans on 1.5, 3, and 7 Tesla Units: A Quantitative Study of 3‐Dimensional Cerebrovasculature. Journal of Neuroimaging 2013; 23(1) doi: 10.1111/j.1552-6569.2011.00597.x
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| 30 |
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