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A new discrete dipole kernel for quantitative susceptibility mapping

Milovic, C; Acosta-Cabronero, J; Pinto, JM; Mattern, H; Andia, M; Uribe, S; Tejos, C; (2018) A new discrete dipole kernel for quantitative susceptibility mapping. Magnetic Resonance Imaging , 51 pp. 7-13. 10.1016/j.mri.2018.04.004. Green open access

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Abstract

PURPOSE: Most approaches for quantitative susceptibility mapping (QSM) are based on a forward model approximation that employs a continuous Fourier transform operator to solve a differential equation system. Such formulation, however, is prone to high-frequency aliasing. The aim of this study was to reduce such errors using an alternative dipole kernel formulation based on the discrete Fourier transform and discrete operators. METHODS: The impact of such an approach on forward model calculation and susceptibility inversion was evaluated in contrast to the continuous formulation both with synthetic phantoms and in vivo MRI data. RESULTS: The discrete kernel demonstrated systematically better fits to analytic field solutions, and showed less over-oscillations and aliasing artifacts while preserving low- and medium-frequency responses relative to those obtained with the continuous kernel. In the context of QSM estimation, the use of the proposed discrete kernel resulted in error reduction and increased sharpness. CONCLUSION: This proof-of-concept study demonstrated that discretizing the dipole kernel is advantageous for QSM. The impact on small or narrow structures such as the venous vasculature might by particularly relevant to high-resolution QSM applications with ultra-high field MRI - a topic for future investigations. The proposed dipole kernel has a straightforward implementation to existing QSM routines.

Type: Article
Title: A new discrete dipole kernel for quantitative susceptibility mapping
Location: Netherlands
Open access status: An open access version is available from UCL Discovery
DOI: 10.1016/j.mri.2018.04.004
Publisher version: http://dx.doi.org/10.1016/j.mri.2018.04.004
Language: English
Additional information: This version is the author accepted manuscript. For information on re-use, please refer to the publisher’s terms and conditions.
Keywords: Forward model, Inverse problem, Iron mapping, MRI phase, Magnetic susceptibility, Ultra-high field MRI, Venography
UCL classification: UCL
UCL > Provost and Vice Provost Offices > School of Life and Medical Sciences
UCL > Provost and Vice Provost Offices > School of Life and Medical Sciences > Faculty of Brain Sciences
UCL > Provost and Vice Provost Offices > UCL BEAMS
UCL > Provost and Vice Provost Offices > UCL BEAMS > Faculty of Engineering Science
UCL > Provost and Vice Provost Offices > UCL BEAMS > Faculty of Engineering Science > Dept of Med Phys and Biomedical Eng
URI: https://discovery.ucl.ac.uk/id/eprint/10052101
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