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Magnetic Resonance Imaging, ISSN 0730-725X, 05/2016, Volume 34, Issue 4, pp. 535 - 540
Purpose: To develop a technique for frequency-selective hyperpolarized C metabolic imaging in ultra-high field strength which exploits the broad spatial... 
Chemical shift displacement | Hyperpolarized | Metabolic imaging | 9.4 T
Journal Article
NeuroImage, ISSN 1053-8119, 03/2018, Volume 168, pp. 211 - 221
Magnetic resonance spectroscopic imaging (MRSI) is a promising technique for mapping the spatial distribution of multiple metabolites in the human brain. These... 
Human brain | Ultra-high magnetic field | FID MRSI | 9.4 T | Spectroscopic imaging | Metabolite mapping
Journal Article
NMR in Biomedicine, ISSN 0952-3480, 12/2018, Volume 31, Issue 12, p. e4014
The aim of this work was to use post-processing methods to improve the data quality of metabolite maps acquired on the human brain at 9.4 T with accelerated... 
metabolite mapping | FID MRSI | 9.4 T | SENSE | ultra-high field
Journal Article
1989, 1. vyd., Edice Fotografie--osobnosti, ISBN 9788070380475, 1 v. (unpaged)
Book
Journal Article
Magnetic Resonance Imaging, ISSN 0730-725X, 05/2016, Volume 34, Issue 4, pp. 535 - 540
To develop a technique for frequency-selective hyperpolarized C metabolic imaging in ultra-high field strength which exploits the broad spatial chemical shift... 
13C | Hyperpolarized | Metabolic imaging | Chemical shift displacement | 9.4 T | chemical shift displacement | hyperpolarized | metabolic imaging | 9.4T
Journal Article
Magnetic Resonance Materials in Physics, Biology and Medicine, ISSN 0968-5243, 06/2016, Volume 29, Issue 3, pp. 579 - 589
Journal Article
NEUROIMAGE, ISSN 1053-8119, 03/2018, Volume 168, pp. 211 - 221
Magnetic resonance spectroscopic imaging (MRSI) is a promising technique for mapping the spatial distribution of multiple metabolites in the human brain. These... 
MRI SCANNER | Ultra-high magnetic field | 9.4 T | 7 T | SUPPRESSION | NEUROSCIENCES | NEUROIMAGING | DISTRIBUTIONS | 1H MRSI | FID MRSI | SPECTROSCOPY | Spectroscopic imaging | IN-VIVO | Human brain | GAMMA-AMINOBUTYRIC-ACID | RAT-BRAIN | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | Metabolite mapping | WATER
Journal Article
NMR IN BIOMEDICINE, ISSN 0952-3480, 04/2018, Volume 31, Issue 4
Gradient echo (GRE)-based acquisition provides a robust readout method for chemical exchange saturation transfer (CEST) at ultrahigh field (UHF). To develop a... 
GLIOMA PATIENTS | APT | NOE | 9.4 T | CHEMICAL-EXCHANGE | 7 T | EXCHANGE SATURATION-TRANSFER | CONTRAST AGENT | chemical exchange saturation transfer | human brain | UHF | PROTON-TRANSFER APT | BIOPHYSICS | SPECTROSCOPY | HUMAN GLIOBLASTOMA | IN-VIVO | STEADY-STATE | CEST | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | snapshot
Journal Article
NeuroImage, ISSN 1053-8119, 01/2018, Volume 164, pp. 48 - 58
The advent of ultra-high field functional magnetic resonance imaging (fMRI) has greatly facilitated submillimeter resolution acquisitions (voxel volume below... 
Submillimeter functional magnetic resonance imaging | High resolution | Visual cortex | Cortical thickness | Equi-volume | Myelin | Ocular dominance | 9.4 Tesla | Equidistant | Cortical depth sampling | 7 Tesla | Journal Article
Journal Article
NMR IN BIOMEDICINE, ISSN 0952-3480, 12/2018, Volume 31, Issue 12
The aim of this work was to use post-processing methods to improve the data quality of metabolite maps acquired on the human brain at 9.4 T with accelerated... 
metabolite mapping | 9.4 T | 1H MRSI | FID MRSI | BIOPHYSICS | REDUCTION | SPECTROSCOPY | ultra-high field | SNR | IN-VIVO | TESLA | SENSE | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Journal Article
Journal of Magnetic Resonance Imaging, ISSN 1053-1807, 06/2018, pp. 1487 - 1497
Background: Retinoblastoma is the most common intraocular tumor in childhood with a good prognosis in terms of mortality, but detailed information about tumor... 
Optic nerve | Magnetic resonance imaging | 17.6 Tesla | Diagnostic accuracy | Morphology | 9.4 Tesla | Tumor seeding | d_article_not_yet_freely_accessible | MR microscopy | Retinoblastoma | Radiology Nuclear Medicine and imaging
Journal Article
NMR in Biomedicine, ISSN 0952-3480, 12/2019, Volume 32, Issue 12, p. n/a
MRS of 13C4‐labelled glutamate (13C4‐Glu) during an infusion of a carbon‐13 (13C)‐labelled substrate, such as uniformly labelled glucose ([U‐13C6]‐Glc),... 
glucose | proton MRS | point‐resolved spectroscopy (PRESS) | 9.4 T | 13C4‐glutamate | LCModel | glutamate | Protons | Lower bounds | Spectroscopy | Infusion | Spectrum analysis | In vivo methods and tests | Glucose | Metabolism | Contamination | Substrates | Carbon 13
Journal Article