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Clinical Applications of Electrical Conductivity Imaging Using MRI

  • Stefano Mandija*
  • , Khin Khin Tha*
  • , Nitish Katoch
  • , Cihan Göksu
  • , Ulrich Katscher
  • , Rosalind Sadleir
  • , Kyu Jin Jung
  • , Jierong Luo
  • , Ilias I. Giannakopoulos
  • , Dong Hyun Kim
  • , Karin Shmueli
  • , Riccardo Lattanzi
  • , Yusuf Ziya Ider
  • , Axel Thielscher
  • , Cornelis van den Berg
  • *Corresponding author for this work

Research output: Contribution to journalReview articlepeer-review

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Abstract

Magnetic resonance imaging (MRI) has emerged as a noninvasive technique for probing the electrical properties of biological tissues: electrical conductivity and relative permittivity. This review focuses on the electrical conductivity and provides a comprehensive overview of applications across both low- and high-frequency regimes. At low frequencies (below 1 MHz), conductivity mapping primarily reflects tissue microstructure and ionic composition. In contrast, at high frequencies (around 100 MHz), tissue conductivity primarily reflects ionic composition. First, we summarize the theoretical foundations, technical developments, and reconstruction algorithms that underpin conductivity imaging, highlighting advances in magnetic resonance electrical impedance tomography, current density imaging, and electrical properties tomography. The main part of the article discusses preclinical and clinical applications, demonstrating the potential and possible roles of conductivity imaging in clinical settings, along with current challenges and emerging applications. Finally, we outline future directions toward integrating conductivity imaging into routine MRI protocols, with the potential to enhance diagnostic precision and therapeutic monitoring. Evidence Level: 1. Technical Efficacy: Stage 3.

Original languageEnglish
Pages (from-to)1224-1245
Number of pages22
JournalJournal of Magnetic Resonance Imaging
Volume63
Issue number5
Early online date7 Mar 2026
DOIs
Publication statusPublished - May 2026

Keywords

  • conductivity MRI
  • current density imaging
  • electrical impedance tomography
  • electrical properties tomography
  • MR-EPT

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