Clean Self-Supervised MRI Reconstruction from Noisy, Sub-Sampled Training Data with Robust SSDU.
Millard C. and Chiew M., (2024), Bioengineering (Basel), 11
Accelerated 3D multi-channel B 1 + mapping at 7 T for the brain and heart.
Kent JL. et al, (2024), Magn Reson Med, 92, 2007 - 2020
Self-navigated 3D diffusion MRI using an optimized CAIPI sampling and structured low-rank reconstruction estimated navigator.
Li Z. et al, (2024), IEEE Trans Med Imaging, PP
Test-Retest Reproducibility of Reduced-Field-of-View Density-Weighted CRT MRSI at 3T.
Farley N. et al, (2024), Tomography, 10, 493 - 503
Accelerated Cardiac Parametric Mapping Using Deep Learning-Refined Subspace Models
Sheagren CD. et al, (2024), Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics), 14507 LNCS, 369 - 379
Test-Retest Reproducibility of Reduced Field of View Density-Weighted CRT MRSI at 3T
Farley N. et al, (2024)
Ultra-high temporal resolution 4D angiography using arterial spin labeling with subspace reconstruction
Shen Q. et al, (2024), Magnetic Resonance in Medicine
A Theoretical Framework for Self-Supervised MR Image Reconstruction Using Sub-Sampling via Variable Density Noisier2Noise.
Millard C. and Chiew M., (2023), IEEE Trans Comput Imaging, 9, 707 - 720
High-resolution 3D ultra-short echo time MRI with Rosette k-space pattern for brain iron content mapping.
Shen X. et al, (2023), J Trace Elem Med Biol, 77
Improving robustness of 3D multi-shot EPI by structured low-rank reconstruction of segmented CAIPI sampling for fMRI at 7T.
Chen X. et al, (2023), Neuroimage, 267
Optimization of 4D combined angiography and perfusion using radial imaging and arterial spin labeling.
Okell TW. and Chiew M., (2022), Magn Reson Med
Time‐encoded pseudo‐continuous arterial spin labeling: Increasing SNR in ASL dynamic angiography
Woods JG. et al, (2022), Magnetic Resonance in Medicine
Simultaneous self-supervised reconstruction and denoising of sub-sampled MRI data with Noisier2Noise
Millard C. and Chiew M., (2022)