» Articles » PMID: 8451417

Absolute Concentrations of Metabolites in the Adult Human Brain in Vivo: Quantification of Localized Proton MR Spectra

Overview
Journal Radiology
Specialty Radiology
Date 1993 Apr 1
PMID 8451417
Citations 112
Authors
Affiliations
Soon will be listed here.
Abstract

In vivo concentrations of cerebral metabolites were obtained by means of 52 single-voxel, localized proton magnetic resonance (MR) spectroscopic examinations of different regions of the brain performed in 26 healthy adults aged 21-32 years. The study was performed at 2.0 T with use of a circularly polarized head coil to ensure homogeneous radio-frequency excitation and signal reception. Proton MR spectra were obtained in the stimulated-echo acquisition mode under fully relaxed conditions (repetition time > or = 6,000 msec) and at short echo times (20 msec) to minimize corrections due to T1 and T2 attenuation and depict the spectra of metabolites with strongly coupled resonances. Absolute concentrations were obtained by means of calibration of resonance signal areas with those of pertinent metabolite solutions from separate studies and correction for coil loading and partial volume effects (eg, with perfused capillary networks and cerebrospinal fluid). The results provide a quantitative basis for studies of both normal human neurochemistry in vivo and metabolic alterations in diseases of the brain.

Citing Articles

Detecting Tumor-Associated Intracranial Hemorrhage Using Proton Magnetic Resonance Spectroscopy.

Yoo H, Lee H, Nga V, Choi Y, Lim J Neurol Int. 2024; 16(6):1856-1877.

PMID: 39728759 PMC: 11679972. DOI: 10.3390/neurolint16060133.


Impact of cannabis use on brain metabolism using P and H magnetic resonance spectroscopy.

Fenzl M, Backens M, Bodea S, Wittemann M, Werler F, Brielmaier J Neuroradiology. 2023; 65(11):1631-1648.

PMID: 37735222 PMC: 10567915. DOI: 10.1007/s00234-023-03220-y.


The role and potential of using quantitative MRI biomarkers for imaging guidance in brain cancer radiotherapy treatment planning: A systematic review.

Aldawsari A, Al-Qaisieh B, Broadbent D, Bird D, Murray L, Speight R Phys Imaging Radiat Oncol. 2023; 27:100476.

PMID: 37565088 PMC: 10410581. DOI: 10.1016/j.phro.2023.100476.


Glucose and Inositol Transporters, SLC5A1 and SLC5A3, in Glioblastoma Cell Migration.

Brosch P, Korsa T, Taban D, Eiring P, Kreisz P, Hildebrand S Cancers (Basel). 2022; 14(23).

PMID: 36497276 PMC: 9738886. DOI: 10.3390/cancers14235794.


Neuroplasticity of Glioma Patients: Brain Structure and Topological Network.

Lv K, Cao X, Wang R, Du P, Fu J, Geng D Front Neurol. 2022; 13:871613.

PMID: 35645982 PMC: 9136300. DOI: 10.3389/fneur.2022.871613.