In Vivo Myelin Water Quantification Using Diffusion–Relaxation Correlation MRI: A Comparison of 1D and 2D Methods

Author:

Endt SebastianORCID,Engel MariaORCID,Naldi EmanueleORCID,Assereto RodolfoORCID,Molendowska MalwinaORCID,Mueller LarsORCID,Mayrink Verdun ClaudioORCID,Pirkl Carolin M.ORCID,Palombo MarcoORCID,Jones Derek K.ORCID,Menzel Marion I.ORCID

Abstract

AbstractMultidimensional Magnetic Resonance Imaging (MRI) is a versatile tool for microstructure mapping. We use a diffusion weighted inversion recovery spin echo (DW-IR-SE) sequence with spiral readouts at ultra-strong gradients to acquire a rich diffusion–relaxation data set with sensitivity to myelin water. We reconstruct 1D and 2D spectra with a two-step convex optimization approach and investigate a variety of multidimensional MRI methods, including 1D multi-component relaxometry, 1D multi-component diffusometry, 2D relaxation correlation imaging, and 2D diffusion-relaxation correlation spectroscopic imaging (DR-CSI), in terms of their potential to quantify tissue microstructure, including the myelin water fraction (MWF). We observe a distinct spectral peak that we attribute to myelin water in multi-component T1 relaxometry, T1-T2 correlation, T1-D correlation, and T2-D correlation imaging. Due to lower achievable echo times compared to diffusometry, MWF maps from relaxometry have higher quality. Whilst 1D multi-component T1 data allows much faster myelin mapping, 2D approaches could offer unique insights into tissue microstructure and especially myelin diffusion.

Funder

Deutsche Forschungsgemeinschaft

Wellcome Trust

Horizon Europe Research and Innovation Programme, European Union

Siemens Healthineers

Bundesministerium für Bildung und Forschung

Horizon 2020

UK Research and Innovation

Technische Universität München

Publisher

Springer Science and Business Media LLC

Subject

Atomic and Molecular Physics, and Optics

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