A localized double‐quantum filter for the in vivo detection of brain glucose
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Summary
The use of the DQF technique for simultaneously monitoring both the input and output of anaerobic glycolysis in the brain was demonstrated by detecting brain glucose and lactate in the same acquisition after iv injection of glucose followed by the induction of global ischemia.
- Type
- article
- Published
- 1998-04-01
- Cited by
- 35
- References
- 37
- OpenAlex
- https://openalex.org/W2011966401
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:34022209
Keywords
Imaging phantom, In vivo, Nuclear magnetic resonance, Glycolysis, Chemistry
References
- Localized 13C NMR Spectroscopy in the Human Brain of Amino Acid Labeling from d‐[1‐13C]Glucose
- The Aldrich library of NMR spectra
- A double quantum coherence transfer proton NMR spectroscopy technique for monitoring steady‐state tumor lactic acid levels in Vivo
- Lactate editing by means of selective-pulse filtering of both zero-and double-quantum coherence signals
- Observation of resolved glucose signals in 1H NMR spectra of the human brain at 4 Tesla
- High resolution1H- and13C-N.M.R spectra ofD-glucopyranose, 2-acetamido-2-deoxy-D-glucopyranose, and related compounds in aqueous media
- in vivo identification and monitoring of changes in rat brain glucose by two‐dimensional shift‐correlated 1h nmr spectroscopy
- Proton editing and imaging of lactate
- Measurement of GABA following GABA‐transaminase inhibition by gabaculine: A 1H and 31P NMR spectroscopic study of rat brain in vivo
- Localized double-quantum-filtered 1H NMR spectroscopy
- Tuned fiducial markers to identify body locations with minimal perturbation of tissue magnetization
- Cerebral glucose is detectable by localized proton NMR spectroscopy in normal rat brain in Vivo
- In Vivo proton spectroscopy and spectroscopic imaging of 1‐13C‐g1ucose and its metabolic products
- Characterization of macromolecule resonances in the 1H NMR spectrum of rat brain
- In vivo detection of GABA in human brain using a localized double‐quantum filter technique
- Homonuclear 1H double-resonance difference spectroscopy of the rat brain in vivo.
- Double-quantum filtering of citrate for in vivo observation.
- Localized 1H NMR measurement of glucose consumption in the human brain during visual stimulation.
- The unequivocal determination of in vivo lactic acid using two-dimensional double-quantum coherence-transfer spectroscopy
- Detection and assignment of the glucose signal in 1h nmr difference spectra of the human brain
Cited by
- NMR STUDIES OF IN VIVO BRAIN GLUCOSE CONCENTRATIONS AND TRANSPORT. Paulson,O., Knudsen,G.M. Moos,T. (eds.), Munksgaard, Copenhagen.
- Mesure de glutamate cérébral chez l'homme et le petit animal par spectroscopie RMN in vivo, application à la maladie de Parkinson
- In vivo 1H NMR spectroscopy of individual human brain metabolites at moderate field strengths.
- Enhancement of spectral editing efficacy of multiple quantum filters in in vivo proton magnetic resonance spectroscopy.
- Simultaneous spectral editing for gamma-aminobutyric acid and taurine using double quantum coherence transfer.
- In vivo detection of (15)N-coupled protons in rat brain by ISIS localization and multiple-quantum editing.
- Effect of strong homonuclear proton coupling on localized 13C detection using PRESS
- Single-quantum coherence filter for strongly coupled spin systems for localized (1)H NMR spectroscopy.
- In vivo single-shot three-dimensionally localized multiple quantum spectroscopy of GABA in the human brain with improved spectral selectivity.
- Nuclear magnetic resonance micro-imaging in the investigation of plant cell metabolism.
- The effects of slice-selective excitation/refocusing in localized spectral editing with gradient-selected double-quantum coherence transfer.
- Off-resonance effects of the radiofrequency pulses used in spectral editing with double-quantum coherence transfer.
- Lactate Imaging with Hadamard Encoded Slice Selective Multiple Quantum Coherence Chemical Shift Imaging
- In Vivo Measurements of Brain Glucose Transport Using the Reversible Michaelis–Menten Model and Simultaneous Measurements of Cerebral Blood Flow Changes during Hypoglycemia
- Incorporating homonuclear polarization transfer into PRESS for proton spectral editing: illustration with lactate and glutathione.
- Strategy for the spectral filtering of myo‐inositol and other strongly coupled spins
- Sources of variability in the response of coupled spins to the PRESS sequence and their potential impact on metabolite quantification
- A Guide to the Metabolic Pathways and Function of Metabolites Observed in Human Brain 1H Magnetic Resonance Spectra
- Detection of glutathione in the human brain in vivo by means of double quantum coherence filtering
- In vivo GABA detection with improved selectivity and sensitivity by localized double quantum filter technique at 4.1T.
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