Skip to main navigation Skip to search Skip to main content

Magnetic resonance spectroscopy and the menstrual cycle: a multi-centre assessment of menstrual cycle effects on GABA & GSH

  • Yulu Song
  • , James J Prisciandaro
  • , Dace Apšvalka
  • , Mae Bernard
  • , Adam Berrington
  • , Miguel Castelo-Branco
  • , Mark K Britton
  • , Marta M Correia
  • , Koen Cuypers
  • , Aleksandra Domagalik
  • , Ulrike Dydak
  • , Niall W Duncan
  • , Gerard E Dwyer
  • , Tao Gong
  • , Ian Greenhouse
  • , Katarzyna Hat
  • , Melina Hehl
  • , Shiori Honda
  • , Chris Horton
  • , Steve Hui
  • Stephen Jackson, Daniella L Jones, Maren S Klan, In Kyoon Lyoo, Marius O Mada, Bronte V McNamara, Paul Mullins, Emlyn Muska, Shinichiro Nakajima, Hayami Nishio, Andreia C Pereira, Eric Porges, Michelle Rowsell, Rubi Ruopp, Destin Shortell, Caitlin M Smith, Stephan Swinnen, Antonia Šušnjar, Lin-Yuan Tseng, Ines R Violante, Sujung Yoon, Richard A E Edden, Katherine Dyke
    • The Johns Hopkins University School of Medicine
    • Medical University of South Carolina
    • University of Cambridge
    • School of Psychology and Sports Sciences
    • University of Nottingham
    • University of Coimbra
    • University of Florida
    • Hasselt University
    • Jagiellonian University
    • Purdue University
    • Taipei Medical University
    • University of Bergen
    • Shandong Provincial Hospital Affiliated to Shandong First Medical University
    • University of Oregon, Eugene
    • Keio University
    • Cascadia Research, Washington
    • University of Surrey
    • Ewha Womans University
    • University of Toronto
    • Bangor University
    • Leuven Brain Institute (LBI)
    • King's College London

    Research output: Contribution to journalArticlepeer-review

    21 Downloads (Pure)

    Abstract

    Gamma-aminobutyric acid (GABA) and glutathione (GSH) play a significant role in the functioning of a healthy brain and can both be quantified using magnetic resonance spectroscopy (MRS). Several small-scale studies have suggested MRS measured GABA may fluctuate with the menstrual cycle, but the effects on GSH are unknown. Utilising recent developments in MRS acquisition, this multi-lab study explores this issue across 4 distinctive brain regions. Data were analysed from 12 independent sites from which a total of 30 women were scanned during three phases of their menstrual cycle corresponding to early follicular, ovulation and mid luteal phases. HERMES and HERCULES sequences were used to measure GABA and GSH in voxels located in the left motor cortex, left posterior insular, medial parietal and medial frontal. Linear mixed models were used to assess the variability contributed by site, participant and menstrual cycle phase. Similar variance was attributed to site and menstrual cycle phase for both GABA and GSH data. No systematic changes in GABA or GSH were revealed for any voxel as a consequence of menstrual cycle phase. Despite our larger sample size and inclusion of more brain regions we fail to replicate previous findings of GABA change as a consequence of menstrual cycle phase. We also show for the first time that MRS measures of GSH so not significantly alter with cycle. Our findings suggest that the menstrual cycle has minimal impact on MRS measures of GABA and GSH. The presence of a menstrual cycle should not be used as justification for exclusion of women in MRS studies. [Abstract copyright: Copyright © 2025 The Authors. Published by Elsevier B.V. All rights reserved.]
    Original languageEnglish
    Article number110430
    JournalJournal of Neuroscience Methods
    Volume418
    Early online date19 Mar 2025
    DOIs
    Publication statusPublished - 1 Jun 2025

    Keywords

    • Adult
    • Brain/metabolism
    • Female
    • Glutathione/metabolism
    • Humans
    • Magnetic Resonance Spectroscopy/methods
    • Menstrual Cycle/metabolism
    • Young Adult
    • gamma-Aminobutyric Acid/metabolism

    Fingerprint

    Dive into the research topics of 'Magnetic resonance spectroscopy and the menstrual cycle: a multi-centre assessment of menstrual cycle effects on GABA & GSH'. Together they form a unique fingerprint.

    Cite this