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Combining multi-echo and phase cycling in bSSFP acquisition to improve whole-brain deuterium metabolic imaging at 9.4 T

Concurrent ultra-high field fMRI and optical imaging of hemodynamic parameters and intracellular calcium

Distribution-free uncertainty estimation in multi-parametric quantitative MRI through conformalized quantile regression

Dynamic measurement of concurrent BOLD and brain tissue displacement quantification in vivo at 7T using motion-encoded stimulated-echo EPI

Elucidating Micro-scale Fiber Trajectories at 16 in Anisotropic Phantoms via Structural Tensor Analysis

Evaluation of Specific Absorption Rate of Tight-Fit Array Coils for Human Head MRI at 9.4T in Presence of EEG Caps

Fast volumetric Cartesian MRI with auto-calibrated local B0 coil array - a reproducing kernel Hilbert space perspective

First experimental results using RF Elements with Switching Transmit Sensitivities at ultrahigh field MRI

Hardware and Procedure for Testing and Evaluation of a pTx 16-Element Transmit/ 32-Element Receive Array Coils at 9.4T.

Individual voxel models for head SAR estimation

Inverted BOLD signal changes in the transient phase of passband balanced SSFP

Navigator-free multi-shot EPI with shift-invariant kernel extraction in subspace

Numerical Evaluation of the Specific Absorption Rate Change of Transmit Arrays at 9.4T due to Presence of B0 Field Probes

RF Power Amplifier Drift Compensation for Reliable B1 Mapping Using Bloch-Siegert Technique

Author:Ali Aghaeifar  Klaus Scheffler  

Session Type:Oral  

Session Date:Thursday, 09 May 2024  

Session Name:Overcoming Imperfections & Artifacts  

Program Number:1252  

Room Session:Nicoll 2  

Institution:Max Planck Institute for Biological Cybernetics  University of Tübingen  

SAR safety procedure for self-built pTx human head RF array coils at 9.4T

Toward Densely Populated Dipole Arrays for Human Prostate Imaging at 7T: 8Tx16Rx Coaxial-End Dipole Array

Understanding signal specificity in fMRI: bSSFP vs. GRE-EPI signal dependence on cortical orientation to B0 at 9.4 Tesla

Using Inductively-Coupled Dipole Pairs as Array Elements for Improving Whole-Brain Coverage at 9.4T