Low‐rank reconstruction for simultaneous double half‐echo 23Na and undersampled 23Na multi‐quantum coherences MRI

Author:

Licht Christian12ORCID,Reichert Simon12ORCID,Bydder Mark3ORCID,Zapp Jascha12,Corella Shirley34,Guye Maxime34,Zöllner Frank G.12ORCID,Schad Lothar R.12,Rapacchi Stanislas34ORCID

Affiliation:

1. Computer Assisted Clinical Medicine, Medical Faculty Mannheim Heidelberg University Mannheim Germany

2. Mannheim Institute for Intelligent Systems in Medicine Medical Faculty Mannheim, Heidelberg University Mannheim Germany

3. Aix‐Marseille Univ CNRS, CRMBM Marseille France

4. APHM, CEMEREM Hôpital Universitaire Timone Marseille France

Abstract

AbstractPurposeTo develop a new sequence to simultaneously acquire Cartesian sodium (23Na) MRI and accelerated Cartesian single (SQ) and triple quantum (TQ) sodium MRI of in vivo human brain at 7 T by leveraging two dedicated low‐rank reconstruction frameworks.Theory and MethodsThe Double Half‐Echo technique enables short echo time Cartesian 23Na MRI and acquires two k‐space halves, reconstructed by a low‐rank coupling constraint. Additionally, three‐dimensional (3D) 23Na Multi‐Quantum Coherences (MQC) MRI requires multi‐echo sampling paired with phase‐cycling, exhibiting a redundant multidimensional space. Simultaneous Autocalibrating and k‐Space Estimation (SAKE) were used to reconstruct highly undersampled 23Na MQC MRI. Reconstruction performance was assessed against five‐dimensional (5D) CS, evaluating structural similarity index (SSIM), root mean squared error (RMSE), signal‐to‐noise ratio (SNR), and quantification of tissue sodium concentration and TQ/SQ ratio in silico, in vitro, and in vivo.ResultsThe proposed sequence enabled the simultaneous acquisition of fully sampled 23Na MRI while leveraging prospective undersampling for 23Na MQC MRI. SAKE improved TQ image reconstruction regarding SSIM by 6% and reduced RMSE by 35% compared to 5D CS in vivo. Thanks to prospective undersampling, the spatial resolution of 23Na MQC MRI was enhanced from mm3 to mm3 while reducing acquisition time from min to min.ConclusionThe proposed sequence, coupled with low‐rank reconstructions, provides an efficient framework for comprehensive whole‐brain sodium MRI, combining TSC, T2*, and TQ/SQ ratio estimations. Additionally, low‐rank matrix completion enables the reconstruction of highly undersampled 23Na MQC MRI, allowing for accelerated acquisition or enhanced spatial resolution.

Publisher

Wiley

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