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Respiratory-motion-corrected simultaneous 3D T1, T2, and fat-fraction mapping at 0.55T, for comprehensive characterization of liver tissue

Respiratory-motion-corrected simultaneous 3D T1, T2, and fat-fraction mapping at 0.55T, for comprehensive characterization of liver tissue

Whole-Heart Cardiovascular Magnetic Resonance Angiography (CMRA) with iNAV-based Non-Rigid Motion-Corrected Reconstruction at 0.55T

Deep learning-based non-rigid motion-corrected reconstruction for whole-heart multi-dimensional joint T1/T2 imaging

Deep learning-based non-rigid motion-corrected reconstruction for whole-heart multi-dimensional joint T1/T2 imaging

Investigation of the effect of deep-breathing on the caval circulation in patients with cardiac rhythm disorders using 5D radial Flow MRI

Investigation of the effect of deep-breathing on the caval circulation in patients with cardiac rhythm disorders using 5D radial Flow MRI

3D whole-heart joint T1/T1/T2 mapping and water-fat imaging for contrast-agent free myocardial tissue characterization at 1.5T

3D whole-heart joint T1/T1/T2 mapping and water-fat imaging for contrast-agent free myocardial tissue characterization at 1.5T

Simulating the efficiency of Variable Flip Angle (VFA) multi-parametric mapping of T1, PD, and T2* at 7T suggests longer TRs may be optimal

3D whole-heart free-breathing joint T1/T2 mapping with isotropic resolution in a hybrid PET-MR system for cardiac sarcoidosis

Simultaneous 3D Whole-Heart Bright-Blood and Black-Blood Imaging with iNAV-based Non-Rigid Motion-Corrected Reconstruction at 0.55T

Highly efficient T1, T2 and Diffusion-prepared radial Magnetic Resonance Fingerprinting

Accelerated whole-heart MRI for congenital heart disease patients using a motion-corrected deep learning reconstruction network

Automatic segmentation of myocardial 3D whole-heart T1 and T2 maps using a nnU-Net.

Exploration of age-related hemodynamic and mechanical changes in the human thoracic aorta using an atlas based approach

Fast 3D free-breathing simultaneous T1 and T1 mapping for noncontrast myocardial tissue characterization at 3T

3D whole-heart joint T1/T1 mapping and water/fat imaging at low-field 0.55T scanner

Finding Optimal Regularization Parameter for Undersampled Reconstruction using Bayesian Optimization

Non-enhanced Multi-contrast 3D Whole-heart MRI for Assessment of Reperfusion Injury in Patients with Acute Myocardial Infarction

New Techniques for Quantitative Assessment of Myocardial Inflammation

Author:Claudia Prieto  

Session Type:Weekday Course  

Session Date:Tuesday, 06 June 2023  

Session Name:Cardiac & Vascular Inflammation  

Program Number:

Room Session:701A  

Institution :King's College London