In-vivo whole brain mapping of the radio frequency transmit field B(1) (+) is a key aspect of recent method developments in ultra high field MRI. We present an optimized method for fast and robust in-vivo whole-brain B(1) (+) mapping at 7T. The method is based on the acquisition of stimulated and spin echo 3D EPI images and was originally developed at 3T. We further optimized the method for use at 7T. Our optimization significantly improved the robustness of the method against large B(1) (+) deviations and off-resonance effects present at 7T. The mean accuracy and precision of the optimized method across the brain was high with a bias less than 2.6 percent unit (p.u.) and random error less than 0.7 p.u. respectively
This article demonstrates the application of spin-echo EPI for resting state fMRI at 7T. A short rep...
Knowledge of the transmission field (B-1(+)) of radio-frequency coils is crucial for high field (B-0...
Synopsis We propose a fast MPM protocol at 7T using skipped-CAIPI 3D-EPI with simple PTx water-exci...
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...
MRI techniques such as quantitative imaging and parallel transmit require precise knowledge of the r...
This work is focused on developing methods for neuroimaging in vivo at 7.0 T with high resolution an...
This article describes experimental studies performed to demonstrate the feasibility of BOLD fMRI us...
International audiencePurpose: Performing simultaneous quantitative MRI at ultra-high field is chall...
This article demonstrates the application of spin-echo EPI for resting state fMRI at 7 T. A short re...
This thesis describes the implementation of quantitative MR methods in the human brain at 7 T. By hi...
We present a versatile high-resolution whole-brain multiparametric/susceptibility mapping protocol a...
The choice of a pulse sequence at ultra-high field can be influenced by a number of considerations a...
This article demonstrates the application of spin-echo EPI for resting state fMRI at 7 T. A short re...
Knowledge of the transmission field (B1(+)) of radio-frequency coils is crucial for high field (B0 ...
This article demonstrates the application of spin-echo EPI for resting state fMRI at 7T. A short rep...
Knowledge of the transmission field (B-1(+)) of radio-frequency coils is crucial for high field (B-0...
Synopsis We propose a fast MPM protocol at 7T using skipped-CAIPI 3D-EPI with simple PTx water-exci...
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...
MRI techniques such as quantitative imaging and parallel transmit require precise knowledge of the r...
This work is focused on developing methods for neuroimaging in vivo at 7.0 T with high resolution an...
This article describes experimental studies performed to demonstrate the feasibility of BOLD fMRI us...
International audiencePurpose: Performing simultaneous quantitative MRI at ultra-high field is chall...
This article demonstrates the application of spin-echo EPI for resting state fMRI at 7 T. A short re...
This thesis describes the implementation of quantitative MR methods in the human brain at 7 T. By hi...
We present a versatile high-resolution whole-brain multiparametric/susceptibility mapping protocol a...
The choice of a pulse sequence at ultra-high field can be influenced by a number of considerations a...
This article demonstrates the application of spin-echo EPI for resting state fMRI at 7 T. A short re...
Knowledge of the transmission field (B1(+)) of radio-frequency coils is crucial for high field (B0 ...
This article demonstrates the application of spin-echo EPI for resting state fMRI at 7T. A short rep...
Knowledge of the transmission field (B-1(+)) of radio-frequency coils is crucial for high field (B-0...
Synopsis We propose a fast MPM protocol at 7T using skipped-CAIPI 3D-EPI with simple PTx water-exci...