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Measurement of brain lactate during visual stimulation using a long TE semi?LASER sequence at 7 T

Fernandes, Carolina C.; Lanz, Bernard; Chen, Chen; Morris, Peter G.

Measurement of brain lactate during visual stimulation using a long TE semi?LASER sequence at 7 T Thumbnail


Authors

Carolina C. Fernandes

Bernard Lanz

Chen Chen

Peter G. Morris



Abstract

Estimation of metabolic changes during neuronal activation represents a challenge for in vivo MRS, especially for metabolites with low concentration and signal overlap, such as lactate. In this work, we aimed to evaluate the feasibility of detecting lactate during brain activation using a long urn:x-wiley:nbm:media:nbm4223:nbm4223-math-0001 (144 ms) semi‐LASER sequence at 7 T. urn:x-wiley:nbm:media:nbm4223:nbm4223-math-0002 spectra were acquired on healthy volunteers ( urn:x-wiley:nbm:media:nbm4223:nbm4223-math-0003) during a paradigm with 15 min of visual stimulation. Outer‐volume signals were further attenuated by the use of saturation slabs, and macromolecular signals in the vicinity of the inverted lactate peak were individually fitted with simulated Lorentzian peaks. All spectra were free of artefacts and highly reproducible across subjects. Lactate was accurately quantified with an average Cramér‐Rao lower bound of 8%. Statistically significant ( urn:x-wiley:nbm:media:nbm4223:nbm4223-math-0004, one‐tailed urn:x-wiley:nbm:media:nbm4223:nbm4223-math-0005‐test) increases in lactate ( urn:x-wiley:nbm:media:nbm4223:nbm4223-math-000610%) and glutamate ( urn:x-wiley:nbm:media:nbm4223:nbm4223-math-00073%) levels during stimulation were detected in the visual cortex. Lactate and glutamate changes were consistent with previous measurements. We demonstrated that quantification of a clear and non‐contaminated lactate peak obtained with a long TE sequence has the potential of improving the accuracy of functional MRS studies targeting non‐oxidative reaction pathways.

Citation

Fernandes, C. C., Lanz, B., Chen, C., & Morris, P. G. (2020). Measurement of brain lactate during visual stimulation using a long TE semi?LASER sequence at 7 T. NMR in Biomedicine, 33(4), https://doi.org/10.1002/nbm.4223

Journal Article Type Article
Acceptance Date Oct 22, 2019
Online Publication Date Jan 29, 2020
Publication Date Apr 1, 2020
Deposit Date Dec 4, 2019
Publicly Available Date Dec 4, 2019
Journal NMR in Biomedicine
Print ISSN 0952-3480
Electronic ISSN 1099-1492
Publisher Wiley
Peer Reviewed Peer Reviewed
Volume 33
Issue 4
Article Number e4223
DOI https://doi.org/10.1002/nbm.4223
Keywords Spectroscopy; Molecular Medicine; Radiology Nuclear Medicine and imaging
Public URL https://nottingham-repository.worktribe.com/output/3477135
Publisher URL https://onlinelibrary.wiley.com/doi/full/10.1002/nbm.4223
Additional Information Received: 2019-04-29; Accepted: 2019-10-22; Published: 2020-01-29

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