4.4 Review

Advanced single voxel 1H magnetic resonance spectroscopy techniques in humans: Experts' consensus recommendations

期刊

NMR IN BIOMEDICINE
卷 34, 期 5, 页码 -

出版社

WILEY
DOI: 10.1002/nbm.4236

关键词

body; brain; chemical shift displacement; metabolites; reproducibility; semiadiabatic LASER; shimming; SPECIAL

资金

  1. National Institute of Biomedical Imaging and Bioengineering [P41 EB015894]
  2. NINDS Institutional Center Cores for Advanced Neuroimaging [P30 NS076408]
  3. National Institute of Neurological Disorders and Stroke (NINDS) [R01 NS080816]

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For conditions resulting in subtle metabolite changes at high fields, advanced MRS methods including pulse sequence adjustments are recommended to overcome limitations of conventional protocols.
Conventional proton MRS has been successfully utilized to noninvasively assess tissue biochemistry in conditions that result in large changes in metabolite levels. For more challenging applications, namely, in conditions which result in subtle metabolite changes, the limitations of vendor-provided MRS protocols are increasingly recognized, especially when used at high fields (>= 3 T) where chemical shift displacement errors, B-0 and B-1 inhomogeneities and limitations in the transmit B-1 field become prominent. To overcome the limitations of conventional MRS protocols at 3 and 7 T, the use of advanced MRS methodology, including pulse sequences and adjustment procedures, is recommended. Specifically, the semiadiabatic LASER sequence is recommended when T-E values of 25-30 ms are acceptable, and the semiadiabatic SPECIAL sequence is suggested as an alternative when shorter T-E values are critical. The magnetic field B-0 homogeneity should be optimized and RF pulses should be calibrated for each voxel. Unsuppressed water signal should be acquired for eddy current correction and preferably also for metabolite quantification. Metabolite and water data should be saved in single shots to facilitate phase and frequency alignment and to exclude motion-corrupted shots. Final averaged spectra should be evaluated for SNR, linewidth, water suppression efficiency and the presence of unwanted coherences. Spectra that do not fit predefined quality criteria should be excluded from further analysis. Commercially available tools to acquire all data in consistent anatomical locations are recommended for voxel prescriptions, in particular in longitudinal studies. To enable the larger MRS community to take advantage of these advanced methods, a list of resources for these advanced protocols on the major clinical platforms is provided. Finally, a set of recommendations are provided for vendors to enable development of advanced MRS on standard platforms, including implementation of advanced localization sequences, tools for quality assurance on the scanner, and tools for prospective volume tracking and dynamic linear shim corrections.

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