Localised proton spectroscopy and spectroscopic imaging in cerebral gliomas, with comparison to positron emission tomography

In 32 patients with gliomas, one- and two-dimensional proton magnetic resonance spectroscopy (1H-MRS) has been conducted, the latter allowing reconstruction of spectroscopic data into a spectroscopic image (MRSI), showing the distribution of the various metabolite concentrations over the cross-secti...

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Published in:Neuroradiology Vol. 37; no. 3; pp. 198 - 206
Main Authors: GO, K. G, KAMMAN, R. L, MOOYAART, E. L, HEERSTERS, M. A. A. M, PRUIM, J, VAALBURG, W, PAANS, A. M. J
Format: Journal Article
Language:English
Published: Berlin Springer 01-04-1995
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Abstract In 32 patients with gliomas, one- and two-dimensional proton magnetic resonance spectroscopy (1H-MRS) has been conducted, the latter allowing reconstruction of spectroscopic data into a spectroscopic image (MRSI), showing the distribution of the various metabolite concentrations over the cross-sectional plane. For lack of absolute concentrations, the measured concentrations of phosphocholine (CHOL), N-acetyl-L-aspartate (NAA), and lactate (LAC) were conventionally expressed in ratios relative to that of creatine (CREAT). Compared to normal brain tissue, an increased CHOL/CREAT ratio was found in all groups of tumours, in glioblastomas, high-, middle- and low-grade astrocytomas both at the margin and the core of the tumours, but in oligodendrogliomas only at the margin. This is consistent with an increased phosphocholine turnover in relation to membrane biosynthesis by the proliferating cells. The NAA/CREAT ratio was decreased in all groups of tumours, both in the centre and at the margin, reflecting replacement of functioning neurons by neoplastic cells. The LAC/CREAT ratio was elevated in the core of malignant gliomas, which may be the result of a prevailing glycolysis, characteristic of tumours, possibly in conjunction with hypoxia/ischaemia. In the perifocal oedema, there was neither elevation of the CHOL/CREAT ratio nor decrease of the NAA/CREAT ratio; an increased LAC/CREAT ratio therefore rather reflected ischaemia/hypoxia probably due to locally elevated pressure and compromised regional perfusion. In the normal brain, the metabolite ratios of grey matter did not differ from those of white matter. The frontal lobe and basal ganglia showed lower NAA/CREAT ratios than the other cerebral areas.
AbstractList In 32 patients with gliomas, one- and two-dimensional proton magnetic resonance spectroscopy (1H-MRS) has been conducted, the latter allowing reconstruction of spectroscopic data into a spectroscopic image (MRSI), showing the distribution of the various metabolite concentrations over the cross-sectional plane. For lack of absolute concentrations, the measured concentrations of phosphocholine (CHOL), N-acetyl-L-aspartate (NAA), and lactate (LAC) were conventionally expressed in ratios relative to that of creatine (CREAT). Compared to normal brain tissue, an increased CHOL/CREAT ratio was found in all groups of tumours, in glioblastomas, high-, middle- and low-grade astrocytomas both at the margin and the core of the tumours, but in oligodendrogliomas only at the margin. This is consistent with an increased phosphocholine turnover in relation to membrane biosynthesis by the proliferating cells. The NAA/CREAT ratio was decreased in all groups of tumours, both in the centre and at the margin, reflecting replacement of functioning neurons by neoplastic cells. The LAC/CREAT ratio was elevated in the core of malignant gliomas, which may be the result of a prevailing glycolysis, characteristic of tumours, possibly in conjunction with hypoxia/ischaemia. In the perifocal oedema, there was neither elevation of the CHOL/CREAT ratio nor decrease of the NAA/CREAT ratio; an increased LAC/CREAT ratio therefore rather reflected ischaemia/hypoxia probably due to locally elevated pressure and compromised regional perfusion. In the normal brain, the metabolite ratios of grey matter did not differ from those of white matter. The frontal lobe and basal ganglia showed lower NAA/CREAT ratios than the other cerebral areas.
Author MOOYAART, E. L
PAANS, A. M. J
KAMMAN, R. L
VAALBURG, W
GO, K. G
HEERSTERS, M. A. A. M
PRUIM, J
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IsPeerReviewed true
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Issue 3
Keywords Radionuclide study
Human
Nervous system diseases
Glioma
Central nervous system disease
Proton
Tumor
Exploration
NMR spectrometry
Comparative study
Positron
Emission tomography
Language English
License CC BY 4.0
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Snippet In 32 patients with gliomas, one- and two-dimensional proton magnetic resonance spectroscopy (1H-MRS) has been conducted, the latter allowing reconstruction of...
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StartPage 198
SubjectTerms Aspartic Acid - analogs & derivatives
Aspartic Acid - analysis
Biological and medical sciences
Brain - diagnostic imaging
Brain Chemistry
Brain Edema - diagnosis
Carbon Radioisotopes
Creatine - analysis
Deoxyglucose - analogs & derivatives
Fluorine Radioisotopes
Fluorodeoxyglucose F18
Glioma - chemistry
Glioma - diagnosis
Glioma - diagnostic imaging
Humans
Lactates - analysis
Lactic Acid
Magnetic Resonance Imaging - methods
Magnetic Resonance Spectroscopy
Medical sciences
Neurology
Phosphorylcholine - analysis
Supratentorial Neoplasms - chemistry
Supratentorial Neoplasms - diagnosis
Supratentorial Neoplasms - diagnostic imaging
Tomography, Emission-Computed
Tumors of the nervous system. Phacomatoses
Tyrosine
Title Localised proton spectroscopy and spectroscopic imaging in cerebral gliomas, with comparison to positron emission tomography
URI https://www.ncbi.nlm.nih.gov/pubmed/7603595
https://search.proquest.com/docview/77368623
Volume 37
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