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Effect of inhaled oxygen level on dynamic glucose‐enhanced MRI in mouse brain.

Authors :
Huang, Jianpan
Chen, Zilin
van Zijl, Peter C. M.
Hin Law, Lok
Pemmasani Prabakaran, Rohith Saai
Park, Se Weon
Xu, Jiadi
Chan, Kannie W. Y.
Source :
Magnetic Resonance in Medicine; Jul2024, Vol. 92 Issue 1, p57-68, 12p
Publication Year :
2024

Abstract

Purpose: To investigate the effect of inhaled oxygen level on dynamic glucose enhanced (DGE) MRI in mouse brain tissue and CSF at 3 T. Methods: DGE data of brain tissue and CSF from mice under normoxia or hyperoxia were acquired in independent and interleaved experiments using on‐resonance variable delay multi‐pulse (onVDMP) MRI. A bolus of 0.15 mL filtered 50% D‐glucose was injected through the tail vein over 1 min during DGE acquisition. MRS was acquired before and after DGE experiments to confirm the presence of D‐glucose. Results: A significantly higher DGE effect under normoxia than under hyperoxia was observed in brain tissue (p = 0.0001 and p = 0.0002 for independent and interleaved experiments, respectively), but not in CSF (p > 0.3). This difference is attributed to the increased baseline MR tissue signal under hyperoxia induced by a shortened T1 and an increased BOLD effect. When switching from hyperoxia to normoxia without glucose injection, a signal change of ˜3.0% was found in brain tissue and a signal change of ˜1.5% was found in CSF. Conclusions: DGE signal was significantly lower under hyperoxia than that under normoxia in brain tissue, but not in CSF. The reason is that DGE effect size of brain tissue is affected by the baseline signal, which could be influenced by T1 change and BOLD effect. Therefore, DGE experiments in which the oxygenation level is changed from baseline need to be interpreted carefully. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
07403194
Volume :
92
Issue :
1
Database :
Complementary Index
Journal :
Magnetic Resonance in Medicine
Publication Type :
Academic Journal
Accession number :
176868677
Full Text :
https://doi.org/10.1002/mrm.30035