A systematic approach to MR spectroscopy of the brain: Indications, protocol, metabolites, and spectral analysis in neurologic diseases

Magnetic resonance spectroscopy (MRS) is a noninvasive imaging technique that complements conventional magnetic resonance imaging by providing in vivo metabolic and biochemical characterization of brain tissue. By quantifying metabolites such as N-acetylaspartate, choline, creatine, lactate, and myo-inositol (myo-Ins), MRS offers insight into neuronal integrity, membrane turnover, energy metabolism, inflammation, and necrosis, features that help distinguish between pathologies with greater specificity than anatomic imaging alone.This review presents a clinically focused, systematic approach to brain MRS, addressing indications, acquisition strategies, spectral interpretation, and characteristic metabolic patterns across a broad spectrum of neuropathologies. Key technical factors influencing spectral quality and reproducibility, such as voxel selection, field strength, echo time, and sequence choice, are highlighted. Metabolic signatures of neoplastic, infectious, inflammatory, demyelinating, metabolic, and neurodegenerative disorders are reviewed with an emphasis on practical differentiation in the setting of overlapping imaging appearances. Recognizing the limited specificity of isolated metabolite abnormalities, this review emphasizes integration of MRS findings with clinical context and conventional MRI. A structured interpretive framework is proposed to promote consistent analysis and enhance diagnostic confidence, reinforcing the role of MRS as a valuable adjunct in contemporary neuroradiologic practice.

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Publication Details

Journal
The Neuroradiology Journal
Published
2026-09-12
DOI
https://doi.org/10.1177/19714009261487613
Primary Topic
Advanced MRI Techniques and Applications
Type
article
Field-Weighted Citation Impact
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article

A systematic approach to MR spectroscopy of the brain: Indications, protocol, metabolites, and spectral analysis in neurologic diseases

Saumik Rahman, Elizabeth Schrickel, Luca Pasquini, Long Tu et al.
The Neuroradiology Journal
Advanced MRI Techniques and Applications
article

A systematic approach to MR spectroscopy of the brain: Indications, protocol, metabolites, and spectral analysis in neurologic diseases

Saumik Rahman, Elizabeth Schrickel, Luca Pasquini, Long Tu, Allison Peng, Carys Kenny-Howell, Muhammad Ahsan Asif, Mantej Singh, Saeed Rahmani, Kristen Si, Mehmet Adin, Shadman M. Rahman
article en

Abstract

Magnetic resonance spectroscopy (MRS) is a noninvasive imaging technique that complements conventional magnetic resonance imaging by providing in vivo metabolic and biochemical characterization of brain tissue. By quantifying metabolites such as N-acetylaspartate, choline, creatine, lactate, and myo-inositol (myo-Ins), MRS offers insight into neuronal integrity, membrane turnover, energy metabolism, inflammation, and necrosis, features that help distinguish between pathologies with greater specificity than anatomic imaging alone.This review presents a clinically focused, systematic approach to brain MRS, addressing indications, acquisition strategies, spectral interpretation, and characteristic metabolic patterns across a broad spectrum of neuropathologies. Key technical factors influencing spectral quality and reproducibility, such as voxel selection, field strength, echo time, and sequence choice, are highlighted. Metabolic signatures of neoplastic, infectious, inflammatory, demyelinating, metabolic, and neurodegenerative disorders are reviewed with an emphasis on practical differentiation in the setting of overlapping imaging appearances. Recognizing the limited specificity of isolated metabolite abnormalities, this review emphasizes integration of MRS findings with clinical context and conventional MRI. A structured interpretive framework is proposed to promote consistent analysis and enhance diagnostic confidence, reinforcing the role of MRS as a valuable adjunct in contemporary neuroradiologic practice.

The Neuroradiology Journal
Philadelphia College of Osteopathic Medicine (US), University of Arizona (US), Allama Iqbal Medical College (PK), Touro University California (US), Yale University (US), The Ohio State University (US)
Openalex Percentile: Top 11%
Advanced MRI Techniques and Applications
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