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Magma (New York, N.Y.)|March 25, 2023
Prediction of motion induced magnetic fields for human brain MRI at 3 TJiazheng Zhou, Gisela E Hagberg, Ali Aghaeifar, et al.Brain Research|June 10, 2009
Background MR gradient noise and non-auditory BOLD activations: a data-driven perspectiveSven Haller, György A Homola, Klaus Scheffler, et al.ACS Sensors|December 21, 2017
Ratiometric Method for Rapid Monitoring of Biological Processes Using Bioresponsive MRI Contrast AgentsSerhat Gündüz, Tanja Savić, Rolf Pohmann, et al.Neuroimage|January 3, 2017
Functional anatomy of the human thalamus at restVinod Jangir Kumar, Erik van Oort, Klaus Scheffler, et al.Magnetic Resonance in Medicine|February 10, 2026
Coaxial Dipole Array With Switching Transmit Sensitivities for Ultrahigh Field MRIDario Bosch, Georgiy A Solomakha, Felix Glang, et al.Aperture Neuro|February 24, 2025
Evaluating the capabilities and challenges of layer-fMRI VASO at 3TLaurentius Renzo Huber, Lisa Kronbichler, Rüdiger Stirnberg, et al.Magnetic Resonance in Medicine|December 4, 2018
Double-row 18-loop transceive-32-loop receive tight-fit array provides for whole-brain coverage, high transmit performance, and SNR improvement near the brain center at 9.4TNikolai I Avdievich, Ioannis-Angelos Giapitzakis, Jonas Bause, et al.Journal of Magnetic Resonance Imaging : JMRI|July 12, 2002
fMRI of the auditory cortex in patients with unilateral carotid artery steno-occlusive diseaseDeniz Bilecen, Ernst Wilhelm Radü, Anja-Carina Schulte, et al.NMR in Biomedicine|February 21, 2012
Rat brain MRI at 16.4T using a capacitively tunable patch antenna in combination with a receive arrayG Shajan, Jens Hoffmann, Dávid Z Balla, et al.Magnetic Resonance in Medicine|March 12, 2011
Quantitative mapping of T2 using partial spoilingOliver Bieri, Klaus Scheffler, Goetz H Welsch, et al.Pageof 40