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3D MRI atlases of congenital aortic arch anomalies and normal fetal heart: application to automated multi-label segmentation

Construction and characterisation of a 7 Tesla flexible body coil with 10 transmit dipoles and 30 receive loops

Evaluation of SAR and heating in children exposed to a 7T MRI Head Coil

Author:Shaihan Malik  David Carmichael  Jeffrey Hand  Joseph Hajnal  

Session Type:Digital Poster  

Session Date:Thursday, 12 May 2022  

Topic:Module 8: Safety, Low-Field, and Interventional  

Session Name:MRI Safety I  

Program Number:2551  

Room Session:Exhibition Hall:S8 & S9  

Institution:King's College London  

High resolution motion compensated contrast-free free-breathing 3D CMRA at 7T using single transmit coil

Improving the Flexibility of RF Power-Sharing Networks with High-Power Phase Shifters

Individualised assessment of regional brain volumes in neonates with Down syndrome reveals extreme deviation in white matter and cerebellum.

An integrated 64-channel receive array design for 7 Tesla head and torso MRI of young infants

Author:Jérémie Clément  Joseph Hajnal  Özlem Ipek  

Session Type:Oral  

Session Date:Thursday, 12 May 2022  

Topic:Module 24: RF Coils, Technologies & Sequences  

Session Name:High-Field RF Coils & Arrays  

Program Number:0712  

Room Session:N11 (Breakout B)  

Institution:King's College London  

Motion-Dependent Low-Order Predictive Linear Model for Patient Safety Assessment at 7T with Technically Feasible Coil Models

Multi-modal MRI reveals changes in placental function following preterm premature rupture of membranes

Optimization of dual flip angle T1mapping at 7T with B1 transmit variability

Perfusion Observations using Spherical Slice-shuffled Ultra-high-field MRI (POSSUM)

Pilot Tone meets DISORDER: Improved data-driven motion-corrected brain MRI by leveraging Pilot Tone signal variations

Quantifying Placental Structure and Function over Gestation with Combined T2*-diffusion MRI

Towards quantification of semisolid tissue properties at 7T using multiband-MRF methods.