MRI techniques such as quantitative imaging and parallel transmit require precise knowledge of the radio-frequency transmit field (B(1) (+)). Three published methods were optimized for robust B(1) (+) mapping at 3T in the human brain: three-dimensional (3D) actual flip angle imaging (AFI), 3D echo-planar imaging (EPI), and two-dimensional (2D) stimulated echo acquisition mode (STEAM). We performed a comprehensive comparison of the methods, focusing on artifacts, reproducibility, and accuracy compared to a reference 2D double angle method. For the 3D AFI method, the addition of flow-compensated gradients for diffusion damping reduced the level of physiological artifacts and improved spoiling of transverse coherences. Correction of susceptibi...
This thesis concentrates on the reduction of field (both main field B0 and RF field B1) inhomogeneit...
Higher field strengths entail less homogeneous RF fields. This may influence quantitative MRI and MR...
International audienceA new pulse technique for counteracting RF inhomogeneity at high fields is rep...
MRI techniques such as quantitative imaging and parallel transmit require precise knowledge of the r...
In-vivo whole brain mapping of the radio frequency transmit field B(1) (+) is a key aspect of recent...
In-vivo whole brain mapping of the radio frequency transmit field B(1) (+) is a key aspect of recent...
In-vivo whole brain mapping of the radio frequency transmit field B1 + is a key aspect of recent met...
Purpose Variable flip angle (VFA) T1 quantification using three‐dimensional (3D) radiofrequency (RF)...
Knowledge of the transmission field (B-1(+)) of radio-frequency coils is crucial for high field (B-0...
Knowledge of the transmission field (B1(+)) of radio-frequency coils is crucial for high field (B0 ...
Purpose: To address the systematic bias in whole-brain dual flip angle (DFA) T1-mapping at 7T by opt...
This is the peer reviewed version of the following article: Cheng, H.‐ L.M. and Wright, G.A. (2006),...
International audiencePurpose: Performing simultaneous quantitative MRI at ultra-high field is chall...
High field MRI has been applied to high-resolution structural and functional imaging of the brain. E...
PURPOSE: At high magnetic field strengths (B0 ≥ 3 T), the shorter radiofrequency wavelength produces...
This thesis concentrates on the reduction of field (both main field B0 and RF field B1) inhomogeneit...
Higher field strengths entail less homogeneous RF fields. This may influence quantitative MRI and MR...
International audienceA new pulse technique for counteracting RF inhomogeneity at high fields is rep...
MRI techniques such as quantitative imaging and parallel transmit require precise knowledge of the r...
In-vivo whole brain mapping of the radio frequency transmit field B(1) (+) is a key aspect of recent...
In-vivo whole brain mapping of the radio frequency transmit field B(1) (+) is a key aspect of recent...
In-vivo whole brain mapping of the radio frequency transmit field B1 + is a key aspect of recent met...
Purpose Variable flip angle (VFA) T1 quantification using three‐dimensional (3D) radiofrequency (RF)...
Knowledge of the transmission field (B-1(+)) of radio-frequency coils is crucial for high field (B-0...
Knowledge of the transmission field (B1(+)) of radio-frequency coils is crucial for high field (B0 ...
Purpose: To address the systematic bias in whole-brain dual flip angle (DFA) T1-mapping at 7T by opt...
This is the peer reviewed version of the following article: Cheng, H.‐ L.M. and Wright, G.A. (2006),...
International audiencePurpose: Performing simultaneous quantitative MRI at ultra-high field is chall...
High field MRI has been applied to high-resolution structural and functional imaging of the brain. E...
PURPOSE: At high magnetic field strengths (B0 ≥ 3 T), the shorter radiofrequency wavelength produces...
This thesis concentrates on the reduction of field (both main field B0 and RF field B1) inhomogeneit...
Higher field strengths entail less homogeneous RF fields. This may influence quantitative MRI and MR...
International audienceA new pulse technique for counteracting RF inhomogeneity at high fields is rep...