Parallel radiofrequency (RF) transmission, either in the form of RF shimming or pulse design, has been proposed as a solution to the B1+ inhomogeneity problem in ultra high field magnetic resonance imaging. As a prerequisite, accurate B1+ maps from each of the available transmit channels are required. In this work, four different encoding methods for B1+ mapping, namely 1-channel-on, all-channels-on-except-1, all-channels-on-1-inverted and Fourier phase encoding, were evaluated using dual refocusing acquisition mode (DREAM) at 9.4 T. Fourier phase encoding was demonstrated in both phantom and in vivo to be the least susceptible to artefacts caused by destructive RF interference at 9.4 T. Unlike the other two interferometric encoding schemes...
Based on computational electromagnetics and multi-level optimization, an inverse approach of attaini...
International audiencePurpose: The acquisition of accurate B1 maps is critical for parallel transmit...
Transmit arrays have been developed to mitigate the RF field inhomogeneity commonly observed in high...
Parallel radiofrequency (RF) transmission, either in the form of RF shimming or pulse design, has be...
Knowledge of the transmission field (B1(+)) of radio-frequency coils is crucial for high field (B0 ...
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: Parallel transmission (PTx) requires knowledge of the B1+ produced by each element. However...
Magnetic Resonance Imaging (MRI) plays an important role in visualizing the structure and function o...
The development of MRI systems operating at or above 7 T has provided researchers with a new window ...
Although MRI offers highly diagnostic medical imagery, patient access to this modality worldwide is ...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
University of Minnesota Ph.D. dissertation. January 2010. Major: Biomedical Engineering. Advisors: K...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
Based on computational electromagnetics and multi-level optimization, an inverse approach of attaini...
International audiencePurpose: The acquisition of accurate B1 maps is critical for parallel transmit...
Transmit arrays have been developed to mitigate the RF field inhomogeneity commonly observed in high...
Parallel radiofrequency (RF) transmission, either in the form of RF shimming or pulse design, has be...
Knowledge of the transmission field (B1(+)) of radio-frequency coils is crucial for high field (B0 ...
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: Parallel transmission (PTx) requires knowledge of the B1+ produced by each element. However...
Magnetic Resonance Imaging (MRI) plays an important role in visualizing the structure and function o...
The development of MRI systems operating at or above 7 T has provided researchers with a new window ...
Although MRI offers highly diagnostic medical imagery, patient access to this modality worldwide is ...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
University of Minnesota Ph.D. dissertation. January 2010. Major: Biomedical Engineering. Advisors: K...
At the field strength of 9.4 T, the highest field currently available for human MRI, the wavelength ...
Based on computational electromagnetics and multi-level optimization, an inverse approach of attaini...
International audiencePurpose: The acquisition of accurate B1 maps is critical for parallel transmit...
Transmit arrays have been developed to mitigate the RF field inhomogeneity commonly observed in high...