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Recommended implementation of quantitative susceptibility mapping for clinical research in the brain: A consensus of the ISMRM electro-magnetic tissue properties study group

  • Berkin Bilgic
  • , Mauro Costagli
  • , Kwok Shing Chan
  • , Jeff Duyn
  • , Christian Langkammer
  • , Jongho Lee
  • , Xu Li
  • , Chunlei Liu
  • , José P. Marques
  • , Carlos Milovic
  • , Simon Daniel Robinson
  • , Ferdinand Schweser
  • , Karin Shmueli
  • , Pascal Spincemaille
  • , Sina Straub
  • , Peter van Zijl
  • , Yi Wang
  • Massachusetts General Hospital
  • University of Genoa
  • IRCCS Fondazione Stella Maris - Calambrone (Pisa)
  • Radboud University Nijmegen
  • National Institutes of Health
  • Medical University of Graz
  • Seoul National University
  • Johns Hopkins University
  • Kennedy Krieger Institute
  • University of California at Berkeley
  • Pontificia Universidad Católica de Valparaíso
  • Medical University of Vienna
  • University of Queensland
  • University College London
  • Cornell University
  • Mayo Clinic Florida

Research output: Contribution to journalArticlepeer-review

121 Scopus citations

Abstract

This article provides recommendations for implementing QSM for clinical brain research. It is a consensus of the International Society of Magnetic Resonance in Medicine, Electro-Magnetic Tissue Properties Study Group. While QSM technical development continues to advance rapidly, the current QSM methods have been demonstrated to be repeatable and reproducible for generating quantitative tissue magnetic susceptibility maps in the brain. However, the many QSM approaches available have generated a need in the neuroimaging community for guidelines on implementation. This article outlines considerations and implementation recommendations for QSM data acquisition, processing, analysis, and publication. We recommend that data be acquired using a monopolar 3D multi-echo gradient echo (GRE) sequence and that phase images be saved and exported in Digital Imaging and Communications in Medicine (DICOM) format and unwrapped using an exact unwrapping approach. Multi-echo images should be combined before background field removal, and a brain mask created using a brain extraction tool with the incorporation of phase-quality-based masking. Background fields within the brain mask should be removed using a technique based on SHARP or PDF, and the optimization approach to dipole inversion should be employed with a sparsity-based regularization. Susceptibility values should be measured relative to a specified reference, including the common reference region of the whole brain as a region of interest in the analysis. The minimum acquisition and processing details required when reporting QSM results are also provided. These recommendations should facilitate clinical QSM research and promote harmonized data acquisition, analysis, and reporting.

Original languageEnglish
Pages (from-to)1834-1862
Number of pages29
JournalMagnetic Resonance in Medicine
Volume91
Issue number5
DOIs
StatePublished - May 2024

Keywords

  • ISMRM study group
  • clinical brain research
  • data acquisition
  • data analysis
  • magnetic resonance imaging
  • quantitative susceptibility mapping

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