In vivo Human MR Spectroscopy Using a Clinical Scanner: Development, Applications, and Future Prospects
MR spectroscopy (MRS) is a unique and useful method for noninvasively evaluating biochemical metabolism in human organs and tissues, but its clinical dissemination has been slow and often limited to specialized institutions or hospitals with experts in MRS technology. The number of 3-T clinical MR s...
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Veröffentlicht in: | Magnetic Resonance in Medical Sciences 2022, Vol.21(1), pp.235-252 |
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description | MR spectroscopy (MRS) is a unique and useful method for noninvasively evaluating biochemical metabolism in human organs and tissues, but its clinical dissemination has been slow and often limited to specialized institutions or hospitals with experts in MRS technology. The number of 3-T clinical MR scanners is now increasing, representing a major opportunity to promote the use of clinical MRS. In this review, we summarize the theoretical background and basic knowledge required to understand the results obtained with MRS and introduce the general consensus on the clinical utility of proton MRS in routine clinical practice. In addition, we present updates to the consensus guidelines on proton MRS published by the members of a working committee of the Japan Society of Magnetic Resonance in Medicine in 2013. Recent research into multinuclear MRS equipped in clinical MR scanners is explained with an eye toward future development. This article seeks to provide an overview of the current status of clinical MRS and to promote the understanding of when it can be useful. In the coming years, MRS-mediated biochemical evaluation is expected to become available for even routine clinical practice. |
doi_str_mv | 10.2463/mrms.rev.2021-0085 |
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subjects | Clinical medicine clinical utility Humans Japan Magnetic resonance Magnetic Resonance Imaging - methods Magnetic resonance spectroscopy Magnetic Resonance Spectroscopy - methods Metabolism metabolite multi-nuclei Organs Protons Review Reviews Scanners Spectroscopy Spectrum analysis |
title | In vivo Human MR Spectroscopy Using a Clinical Scanner: Development, Applications, and Future Prospects |
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