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A Versatile Toolbox for Rapid, Joint Design of pTx RF and Gradient Pulses Using Pytorch's Autodifferentiation

A Versatile Toolbox for Rapid, Joint Design of pTx RF and Gradient Pulses Using Pytorch's Autodifferentiation

Dynamic dipole receive coils for improved 3D parallel imaging at ultra-high magnetic field

Dynamic dipole receive coils for improved 3D parallel imaging at ultra-high magnetic field

MR-double-zero in vivo: Model-free and live MRI contrast optimization running a loop over a real scanner with a real subject.

Investigations on non-Cartesian parallel imaging with time-varying receive sensitivities

Evaluation of Coaxial Dipole Antennas as Transceiver Elements of Human Head Array for Ultra-High Field MRI at 9.4T

Author:Georgiy Solomakha  Dario Bosch  Klaus Scheffler  Nikolai Avdievich  

Session Type:Oral  

Session Date:Wednesday, 07 June 2023  

Session Name:Advances in RF Coil Arrays  

Program Number:1061  

Room Session:718B  

Institution :Max Planck Institute for Biological Cybernetics  University of Tübingen  

Segmented 3D GRE-EPI optimized for BOLD fMRI at 9.4T

Fasciculus Axonal Connective Tissue Multiscale Imaging (FACTMI) - Connectome Mapping of Optic Nerve with 16 m MRI at 14T and 0.1 m histology

Fasciculus Axonal Connective Tissue Multiscale Imaging (FACTMI) - Connectome Mapping of Optic Nerve with 16 m MRI at 14T and 0.1 m histology

Rapid and high-resolution bSSFP fMRI using 3D stack of spirals at 9.4 T

Double-Row 16-element Folded-End Dipole Transceiver Array for Human Whole Brain Imaging at 9.4 T.

Numerical Evaluation of Specific Absorption Rate of Local Transceiver Coil Arrays for Ultra-High Field MRI with Different Local Mesh Properties

Ultrafast submillimeter model-based NN quantification of whole-brain T1 and T2 using phase-cycled bSSFP

Dependence of the EPI and bSSFP resting-state fMRI signals on the cortical orientation relative to B0: Initial observations at 9.4 Tesla

Silent slice-wise shimming with a multi-coil setup at ultrahigh-field MRI

In-vivo image acceleration with an 8-channel local B0 coil array and parallel imaging in a 9.4T human MR scanner

Reconfigurable Coaxial Receive Dipoles for Dynamic Parallel Imaging of Human Brain at 9.4T