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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

Optimized 7 T Cortical Magnetization Transfer Saturation Imaging: Application to Cortical Myelin Imaging in Multiple Sclerosis

Repeatability of in vivo T2 Relaxation Times Regional and Cluster Analysis in the Loaded Knee

Repeatability of in vivo T2 Relaxation Times Regional and Cluster Analysis in the Loaded Knee

Referenceless Nyquist Ghost Correction Outperforms Standard Navigator Based Method for DT-CMR

Referenceless Nyquist Ghost Correction Outperforms Standard Navigator Based Method for DT-CMR

Mapping Placenta Structure and Function with Low-Field MRI

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

Widening access and increasing value to fetal MRI with a clinical 20min low-field 0.55T fetal exam in 40 participants

In-Vivo Simultaneous Hyperpolarized 129Xe MRI and [15O]-water PET Multi-Modal Imaging: A Proof of Concept Study

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

An Optimized RF Coil for Sensitive 31P Magnetic Resonance Spectroscopic Imaging of the Human Brain and Cerebellum at 7T.

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

Demonstration of Intracranial Aneurysm Healing after Endovascular Coiling Evaluated by 3D T1 SPACE Magnetic Resonance

Author:Sho-Jen Cheng  Xue-Zhe Lu  Yi-Hsin Wang  

Session Type:Digital Poster  

Session Date:Monday, 05 June 2023  

Session Name:Vessel Wall & Lumen Imaging I  

Program Number:1506  

Room Session:Exhibition Halls D/E  

Institution :Siemens Healthcare Limited  Taipei Medical University Hospital  

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

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

An initial exploration of spiral imaging for quantitative fetal T2* mapping on a low-cost low-field MRI scanner

Efficient fetal brain and placental T1 mapping at 0.55T

Comparison of k-space Sampling Patterns for MR Fingerprinting

Numerical Simulation of SAR for a dual-frequency 1H/19F Body Coil array at 3 Tesla

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

Multiple-Slice, Multiple-Breath Washout Hyperpolarized 129Xe Ventilation Mapping of the Lung using Accelerated Data Acquisition

Characterization of Cardiac Quantitative Susceptibility Mapping (QSM)

Fast reconstruction of SMS bSSFP myocardial perfusion images using a combination of parallel imaging and AI-based denoising

Development of Small Animal PET-insert Compatible RF Coils for Simultaneous 129Xe MRI/15O2-PET Brain Perfusion Measurements

Comparing parallel transmit 2-spoke against circularly polarized pulses for 7T whole brain diffusion MRI

Concatenated multi-contrast wavelet-based compressed sensing reconstruction.

Fast continuous 3D catheter balloon tracking for MRI-guided cardiac catheterization using 1D slice projection imaging with GRE stack of slices.

Quantification and evaluation of cardiac motion correction methods for hybrid PET/MRI

Low field cardiac MR thermometry: feasibility at 0.55T

Author:Ronald Mooiweer  Charlotte Rogers  Radhouene Neji  Reza Razavi  Sébastien Roujol  

Session Type:Digital Poster  

Session Date:Thursday, 08 June 2023  

Session Name:Thermometry  

Program Number:4998  

Room Session:Exhibition Halls D/E  

Institution :King's College London  Siemens Healthcare Limited  

What should I use to fill my Ultra-high Field MRI phantom?

Workflow and performance measures for integrating magnetic field monitoring with an 8-channel pediatric head coil for 7T MRI