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Accuracy and repeatability of joint sparsity multi-component estimations in MR Fingerprinting

Can You & (A)I Learn the Physics Behind Cardiovascular MR?

Author:Sebastian Weingärtner  

Session Type:Member-Initiated Tutorials  

Session Date:Tuesday, 10 May 2022  

Topic:

Session Name:Cardiovascular MR with a Little Help from AI  

Program Number:

Room Session:ICC Capital Hall 2  

Institution:Delft University of Technology  

    Comparison of arterial input functions obtained through back-to-back acquisition of DCE and DSC MRI

    Fast Subject-Specific Local SAR and B1+ Prediction for PTx at 7T using only an Initial Localizer Scan

    Author:Wyger Brink  Marius Staring  Rob Remis  Andrew Webb  

    Session Type:Oral  

    Session Date:Tuesday, 10 May 2022  

    Topic:Module 32: New Systems & Devices  

    Session Name:High-Field MR  

    Program Number:0387  

    Room Session:N11 (Breakout B)  

    Institution:Delft University of Technology  Leiden University Medical Center  

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

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

    Joint sparsity multi-component MRF reconstruction - directly from k-space to component maps

    Recurrent Variational Inference for fast and robust reconstruction of accelerated FLAIR MRI in Multiple Sclerosis

    Sequence optimisation mitigating undersampling errors in Magnetic Resonance Fingerprinting

    Sequence optimisation mitigating undersampling errors in Magnetic Resonance Fingerprinting

    Author:David Heesterbeek  Martin van Gijzen  Frans Vos  Martijn Nagtegaal  

    Session Type:Power Pitch Poster  

    Session Date:Wednesday, 11 May 2022  

    Topic:

    Session Name:Poster: MR Fingerprinting  

    Program Number:0561  

    Room Session:Power Pitch Theatre 2  

    Institution:Delft University of Technology  Erasmus MC  

    Through-plane Motion in Magnetic Resonance Fingerprinting: Simulations and Phantom Experiments

    Towards reproducible Arterial Spin Labelling in the myocardium: Impact of blood T1 time and imaging readout parameters

    Ultra-high field done ultra-fast:
    Enhancing Wave-CAIPI using an single-axis insert head gradient