Purpose MP2RAGE T-1-weighted imaging has been shown to be beneficial for various applications, mainly because of its good grey-white matter contrast, its B-1-robustness and ability to derive T(1)maps. Even using parallel imaging, the method requires long acquisition times, especially at high resolution. This work aims at accelerating MP2RAGE imaging using compressed sensing. Methods A pseudo-phyllotactic Cartesian MP2RAGE readout was implemented allowing for flexible reordering and undersampling factors. The sampling pattern was first optimized based on fully sampled data and a compressed sensing reconstruction. Changes in contrast ratios, automated brain segmentation results, and quantitative T(1)values were used for benchmarking. In vivo ...
Imaging in neuroscience, clinical research and pharmaceutical trials often employs the 3D magnetisat...
International audienceReducing acquisition time is a major challenge in high-resolution MRI that has...
International audienceBoth parallel Magnetic Resonance Imaging~(pMRI) and Compressed Sensing (CS) ar...
MP2RAGE T <sub>1</sub> -weighted imaging has been shown to be beneficial for various app...
International audienceTo develop a Compressed Sensing (CS)-MP2RAGE sequence to drastically shorten a...
Objective: The Fluid And White matter Suppression (FLAWS) MRI sequence provides multiple T1-weighted...
International audienceObjective The Fluid And White matter Suppression (FLAWS) MRI sequence provides...
PurposeThis study proposes and evaluates a novel method for generating efficient undersampling patte...
International audienceMagnetic Resonance Imaging (MRI) is one of the most dynamic and safe imaging m...
Magnetic Resonance Imaging (MRI) reconstruction algorithm using semi-PROPELLER compressed sensing is...
Multi-parameter mapping (MPM) magnetic resonance imaging (MRI) provides quantitative estimates of th...
Compressed sensing accelerates magnetic resonance imaging (MRI) acquisition by undersampling of the ...
Magnetic Resonance Imaging (MRI) is a great invention in the biomedical field, it is an instrument w...
Imaging in neuroscience, clinical research and pharmaceutical trials often employs the 3D magnetisat...
International audienceReducing acquisition time is a major challenge in high-resolution MRI that has...
International audienceBoth parallel Magnetic Resonance Imaging~(pMRI) and Compressed Sensing (CS) ar...
MP2RAGE T <sub>1</sub> -weighted imaging has been shown to be beneficial for various app...
International audienceTo develop a Compressed Sensing (CS)-MP2RAGE sequence to drastically shorten a...
Objective: The Fluid And White matter Suppression (FLAWS) MRI sequence provides multiple T1-weighted...
International audienceObjective The Fluid And White matter Suppression (FLAWS) MRI sequence provides...
PurposeThis study proposes and evaluates a novel method for generating efficient undersampling patte...
International audienceMagnetic Resonance Imaging (MRI) is one of the most dynamic and safe imaging m...
Magnetic Resonance Imaging (MRI) reconstruction algorithm using semi-PROPELLER compressed sensing is...
Multi-parameter mapping (MPM) magnetic resonance imaging (MRI) provides quantitative estimates of th...
Compressed sensing accelerates magnetic resonance imaging (MRI) acquisition by undersampling of the ...
Magnetic Resonance Imaging (MRI) is a great invention in the biomedical field, it is an instrument w...
Imaging in neuroscience, clinical research and pharmaceutical trials often employs the 3D magnetisat...
International audienceReducing acquisition time is a major challenge in high-resolution MRI that has...
International audienceBoth parallel Magnetic Resonance Imaging~(pMRI) and Compressed Sensing (CS) ar...