3D free-breathing simultaneous myocardial T1 and T1 mapping with B1 correction and subject-specific non-rigid motion correction

4D Flow MRI Velocity Enhancement and Anti-Aliasing Using Divergence Free Potential in Neural Networks

Acceleration of multi-echo high resolution brain imaging using variable-density sampling and patch-based regularization framework

Artifact free Projection onto Dipole Fields via a Generalized Frequency-domain Discrete Dipole Kernel

Data-consistent super resolution for 3D whole-heart MRI using a motion-corrected deep-learning reconstruction framework

DE-NIK: Leveraging Dual-Echo Data for Respiratory-Resolved Abdominal MR Reconstructions Using Neural Implicit k-Space Representations

Efficient spatial regularisation of dictionary matching using discrete Markov random fields

Highly efficient simultaneous joint T1-T2 mapping for isotropic resolution 3D knee imaging at 0.55 T

Interactive Visualizations

Joint group sparsity-based motion-compensated deep learning reconstruction for 3D whole-heart joint T1/T2 mapping

Liver T1, T2 and ADC Magnetic Resonance Fingerprinting in a single breath-hold

Model based rEconstruction by Deep Algorithm unrolLing (MEDAL) for fast 3D whole-heart T2 mapping

Multiparametric & Fingerprinting in Cardiac MRI: Everything All at Once

Author:Claudia Prieto  

Session Type:Weekend Course  

Session Date:Sunday, 05 May 2024  

Session Name:Advanced Cardiovascular MRI Techniques  

Program Number:

Room Session:Room 331-332  

Institution:Pontificia Universidad Catolica de Chile  

    Physics-informed Variational Auto-Encoder to generate synthetic multi-echo chemical shift-encoded liver MR images

    Rapid Motion Estimation and Motion-Corrected End-to-End Deep Learning Reconstruction for 1 Heartbeat CINE

    SHAP Interpretation of a Tree-Based Model for Deep Gray Matter QSM and R2 in First Episode Psychosis Patients and Their Response to Antipsychotics

    SHAP Interpretation of Machine Learning Model for Subcortical White Matter Biomarkers in Cognitive Impairment in Multiple Sclerosis Patients

    Simultaneous 3D T1, T2, and fat-fraction mapping with respiratory-motion correction, for comprehensive liver tissue characterisation at 0.55T