Highly accelerated 3D Cartesian MPnRAGE with implicit neural representation reconstruction
Natascha Niessen, Ana Beatriz Solana, Carolin M. Pirkl, Tim Sprenger, Hannah Eichhorn, Veronika Spieker, Wenqi Huang, Rolf F. Schulte, Florian Wiesinger, Tobias C. Wood, Marion I. Menzel, Julia A. Schnabel on behalf of the PREDICTOM consortium
Abstract
MPnRAGE enables multiple inversion contrast images in a single scan, allowing quantitative T1 mapping, tissue nulled contrasts, and standard MPRAGE synthesis. However, current 3D scan times remain clinically impractical, motivating accelerated 3D MPnRAGE. This work provides a highly accelerated Cartesian 3D MPnRAGE sequence with joint implicit neural representation (INR) reconstruction. The sequence uses a tailored view-ordering strategy, flip angle schedule and complementary variable-density Poisson-disk undersampling. Calibration data acquired during otherwise unused delay time are used for sensitivity map estimation and complementary high-frequency sampling. Ten INR-reconstructed inversion images at 1.5 mm3 are evaluated against fully sampled references via retrospective undersampling. Prospectively accelerated 1 mm3 images at R = 20 (5.39 min) demonstrate clinical feasibility. INR reconstruction outperforms subspace and iterative local low rank reconstruction on highly accelerated data. The proposed highly undersampled 3D Cartesian MPnRAGE with INR reconstruction generates multiple high-quality inversion contrasts in substantially reduced scan time. Scan-specific INR reconstruction improves image quality while reducing reconstruction time versus state-of-the-art methods.
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