Pierre-Francois Van de Moortele
Affiliations: | Biomedical Engineering | University of Minnesota, Twin Cities, Minneapolis, MN |
Area:
Biomedical Engineering, RadiologyGoogle:
"Pierre-Francois Van de Moortele"Children
Sign in to add traineeXiaoping Wu | grad student | 2010 | UMN (Neurotree) |
Julien SEIN | post-doc | 2009-2013 | University of Minnesota Medical School (Chemistry Tree) |
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Publications
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Zhang B, Radder J, Giannakopoulos I, et al. (2024) Performance of receive head arrays versus ultimate intrinsic SNR at 7 T and 10.5 T. Magnetic Resonance in Medicine |
Le Ster C, Grant A, Van de Moortele PF, et al. (2022) Magnetic field strength dependent SNR gain at the center of a spherical phantom and up to 11.7T. Magnetic Resonance in Medicine |
Sadeghi-Tarakameh A, Jungst S, Lanagan M, et al. (2021) A nine-channel transmit/receive array for spine imaging at 10.5 T: Introduction to a nonuniform dielectric substrate antenna. Magnetic Resonance in Medicine |
Tavaf N, Lagore RL, Jungst S, et al. (2021) A self-decoupled 32-channel receive array for human-brain MRI at 10.5 T. Magnetic Resonance in Medicine |
Uğurbil K, Van de Moortele PF, Grant A, et al. (2021) Progress in Imaging the Human Torso at the Ultrahigh Fields of 7 and 10.5 T. Magnetic Resonance Imaging Clinics of North America. 29: e1-e19 |
Opheim G, van der Kolk A, Bloch KM, et al. (2020) 7T Epilepsy Task Force Consensus Recommendations on the use of 7T in Clinical Practice. Neurology |
Grant A, Metzger GJ, Van de Moortele PF, et al. (2020) 10.5 T MRI static field effects on human cognitive, vestibular, and physiological function. Magnetic Resonance Imaging |
Sadeghi-Tarakameh A, Adriany G, Metzger GJ, et al. (2020) Improving radiofrequency power and specific absorption rate management with bumped transmit elements in ultra-high field MRI. Magnetic Resonance in Medicine |
Steensma B, van de Moortele PF, Ertürk A, et al. (2020) Introduction of the snake antenna array: Geometry optimization of a sinusoidal dipole antenna for 10.5T body imaging with lower peak SAR. Magnetic Resonance in Medicine |
Ma R, Akcakaya M, Moeller S, et al. (2020) A field-monitoring-based approach for correcting eddy-current-induced artifacts of up to the 2 spatial order in Human-Connectome-Project-style multiband diffusion MRI experiment at 7T: a pilot study. Neuroimage. 116861 |