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Magnetic Resonance in Medicine, ISSN 0740-3194, 02/2017, Volume 77, Issue 2, pp. 571 - 580
Purpose Together with the development of MRI contrasts that are inherently small in their magnitude, increased magnetic field accuracy is also required. Hence,... 
B0 mapping | field mapping | CEST | B1 mapping | WASABI | Magnetic fields | Algorithms
Journal Article
NMR in Biomedicine, ISSN 0952-3480, 09/2017, Volume 30, Issue 9, p. n/a
The simultaneous use of linear spatial encoding magnetic fields (L‐SEMs) and nonlinear spatial encoding magnetic fields (N‐SEMs) in B1+ inhomogeneity problems... 
small tip angle | spoke excitation | nonlinear gradients | excitation k‐space | B1+ inhomogeneity | simultaneous use of linear and nonlinear gradients | inhomogeneity | excitation k-space | Inhomogeneity | Excitation | Magnetic fields | Independent variables | Spatial discrimination
Journal Article
Magnetic Resonance in Medicine, ISSN 0740-3194, 01/2020, Volume 83, Issue 1, pp. 56 - 67
Purpose B1+ and T1 corrections and dynamic multicoil shimming approaches were proposed to improve the fidelity of high‐isotropic‐resolution generalized... 
B1+inhomogeneity | diffusion‐weighted imaging | shim array | gSlider | Coils | Reconstruction | Neuroimaging | Fidelity | Brain | Hardware reviews | Distortion | Artifacts | Accuracy | Reduction | Imaging | Inhomogeneity | Diffusion | Arrays | Acceleration
Journal Article
Magnetic Resonance in Medicine, ISSN 0740-3194, 07/2010, Volume 64, Issue 1, pp. 1 - 8
Susceptibility artifacts and excitation radiofrequency field B1+ inhomogeneity are major limitations in high‐field MRI. Parallel transmission methods are... 
B1+ inhomogeneity reduction | four‐dimensional RF pulses | parallel transmission | spectral‐spatial RF pulses | susceptibility artifacts | Radiography | Artifacts | Brain - diagnostic imaging | Humans | Radio Waves | Magnetic Resonance Imaging - methods | Phantoms, Imaging | Four-dimensional RF pulses | spectral-spatial RF pulses
Journal Article
Magnetic Resonance in Medicine, ISSN 0740-3194, 08/2019, Volume 82, Issue 2, pp. 693 - 705
Purpose To mitigate B1+ inhomogeneity in quantitative CEST MRI at ultra‐high magnetic field strengths (B0 ≥ 7 Tesla) using a parallel transmit system. Methods... 
parallel transmission (pTx) | ultra‐high‐field MRI | pulsed CEST | RF inhomogeneity | B1 shimming | 7 Tesla | chemical exchange saturation transfer | Coils | Brain | Medical imaging | Albumen | Saturation | Overhauser effect | Mitigation | Organic chemistry | Magnetic resonance imaging | Dependence | Homogeneity | Inhomogeneity | In vivo methods and tests | Magnetic fields | Image contrast
Journal Article
by Li, Z.F and Zhao, W and Qi, T.F and Gao, C and Gu, Q and Zhao, J.S and Koh, T.S
Physics in Medicine and Biology, ISSN 0031-9155, 08/2018, Volume 63, Issue 16, p. 16NT01
Journal Article
NMR in Biomedicine, ISSN 0952-3480, 05/2015, Volume 28, Issue 5, pp. 529 - 537
Journal Article
Magnetic Resonance in Medical Sciences, ISSN 1347-3182, 2018, Volume 17, Issue 3, pp. 244 - 250
Journal Article
Journal of Magnetic Resonance, ISSN 1090-7807, 11/2019, Volume 308, p. 106595
[Display omitted] •Pulse design framework for adiabatic pulses with improved B1 insensitivity.•The framework analytically derives a correction component for an... 
Frequency-modulated | Adiabatic pulse | MRI | RF excitation | B1 inhomogeneity
Journal Article
Journal of magnetic resonance (San Diego, Calif. : 1997), ISSN 1090-7807, 10/2015, Volume 259, pp. 199 - 206
Given their high sensitivity and ability to limit the field of view (FOV), surface coils are often used in magnetic resonance spectroscopy (MRS) and imaging... 
Spatiotemporal encoding | surface coil MRI | B1 corrections | swept pulses | Ultrafast MRI
Journal Article