Electrical properties based B 1 + prediction for electrical properties tomography reconstruction evaluation

Publication date

2025-09

Authors

Meerbothe, Thierry
Jung, Kyu-Jin
Cui, Chuanjiang
Kim, Dong-Hyun
van den Berg, CATORCID 0000-0002-5565-6889
Mandija, StefanoORCID 0000-0002-4612-5509

Editors

Advisors

Supervisors

Document Type

Article

Collections

Open Access logo

License

cc_by

Abstract

Purpose: In MR electrical properties tomography (EPT), conductivity and permittivity are reconstructed from MR measurements. However, depending on the reconstruction method, reconstructed electrical properties (EPs) show large variability in vivo, reducing confidence in the reconstructed values for clinical application in practice. To overcome this problem we present a method to evaluate the reconstructed EPs using a physics-based (Formula presented.) estimation model. Methods: A physics-based method using a finite difference based recurrent relation is used to estimate the (Formula presented.) field from a set of given EPs and the boundary of the measured (Formula presented.) field. Reconstructed EPs can be evaluated by comparing the estimated (Formula presented.) field with the measured (Formula presented.) field. The method was first validated in simulations and afterward tested using MRI data from phantoms and in vivo. Results: The simulation experiments show that the (Formula presented.) field can be accurately estimated, within 90 s for a typical brain at 1 mm3 isotropic resolution, when correct EPs are used as input. When incorrect EPs are used as input the estimated (Formula presented.) fields shows differences with the measured (Formula presented.) fields. These differences directly correspond to the errors in the underlying EPs, enabling detection of errors in the reconstructions. The results obtained in MRI experiments using phantoms and in vivo show the applicability of the method in practice. Conclusion: With the proposed method, (Formula presented.) fields can be accurately estimated from EPs. This approach can be used to evaluate EPT reconstructions and consequently gain more confidence in reconstructed EPs values in vivo.

Keywords

conductivity, confidence, electrical properties tomography, finite differences, Radiology Nuclear Medicine and imaging

Citation

Meerbothe, T G, Jung, K-J, Cui, C, Kim, D-H, van den Berg, C A T & Mandija, S 2025, 'Electrical properties based B 1 + prediction for electrical properties tomography reconstruction evaluation', Magnetic Resonance in Medicine, vol. 94, no. 3, pp. 1269-1283. https://doi.org/10.1002/mrm.30520