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Adiabatic T mapping of the human myocardium at 3T.

Distributed memory-efficient deep learning reconstruction for improved SIMBA whole-heart coronary MRI

Highly Accelerated Myocardial Perfusion Using Physics-guided Deep Learning With Structure-encoded Coil Maps

High-Quality 0.5mm Isotropic Functional MRI Using a Synergistic Combination of NORDIC Denoising and Deep Learning Reconstruction

Inversion Recovery Based Magnetization Transfer Mapping in the Human Myocardium In the presence of Incomplete Bound Pool Saturation at 3T

Learning Deep Linear Convolutional Transforms For Accelerated MRI

Physics-Based Deep Learning for CMR Image Reconstruction

Author:Mehmet Akcakaya  

Session Type:Sunrise Course  

Session Date:Tuesday, 10 May 2022  

Topic:

Session Name:Extending Cardiovascular MR: Learning CMR Image Reconstruction  

Program Number:

Room Session:ICC Capital Suite 8-9  

Institution:University of Minnesota  

Single Breath-hold Simultaneous T2 and TRAFF2 mapping for approximate Spin-lock Dispersion Mapping in the Myocardium at 3T

Zero-Shot Physics-Guided Self-Supervised Learning for Subject-Specific MRI Reconstruction