Novel methods for quantitative, transient-state multiparametric imaging are increasingly being demonstrated for assessment of disease and treatment efficacy. Here, we build on these by assessing the most common Non-Cartesian readout trajectories (2D/3D radials and spirals), demonstrating efficient anti-aliasing with a k-space view-sharing technique, and proposing novel methods for parameter inference with neural networks that incorporate the estimation of proton density. Our results show good agreement with gold standard and phantom references for all readout trajectories at 1.5 T and 3 T. Parameters inferred with the neural network were within 6.58% difference from the parameters inferred with a high-resolution dictionary. Concordance corr...
This study aims to develop a silent, fast and 3D method for T1 and proton density (PD) mapping, whil...
Purpose : To investigate the ability of simultaneous multislice triple-echo steady-state (SMS- TESS)...
International audienceWe have recently proposed a new optimization algorithm called SPARKLING (Sprea...
Purpose: Advanced MRI-based biomarkers offer comprehensive and quantitative information for the eval...
In current clinical systems, magnetic resonance imaging scans for disease diagnosis and prognosis ar...
Magnetic Resonance properties of tissues can be quantified in several respects: relaxation processes...
Magnetic Resonance Imaging (MRI) produces superior soft tissue contrast that is mostly determined by...
Within this thesis, my work carried out in order to prepare an existing quantitative imaging method,...
Quantitative magnetic resonance imaging (qMRI) estimates tissue-specific parameters from a set of di...
Quantitative T <sub>2</sub> measurements are sensitive to intra- and extracellular wate...
International audiencePurpose: Performing simultaneous quantitative MRI at ultra-high field is chall...
Relaxation rates provide important information about tissue microstructure. Multi-parameter mapping ...
Relaxation rates provide important information about tissue microstructure. Multi-parameter mapping ...
We have recently proposed a new optimization algorithm called SPARKLING (Spreading Projection Algori...
Multicenter clinical and quantitative magnetic resonance imaging (qMRI) studies require a high degre...
This study aims to develop a silent, fast and 3D method for T1 and proton density (PD) mapping, whil...
Purpose : To investigate the ability of simultaneous multislice triple-echo steady-state (SMS- TESS)...
International audienceWe have recently proposed a new optimization algorithm called SPARKLING (Sprea...
Purpose: Advanced MRI-based biomarkers offer comprehensive and quantitative information for the eval...
In current clinical systems, magnetic resonance imaging scans for disease diagnosis and prognosis ar...
Magnetic Resonance properties of tissues can be quantified in several respects: relaxation processes...
Magnetic Resonance Imaging (MRI) produces superior soft tissue contrast that is mostly determined by...
Within this thesis, my work carried out in order to prepare an existing quantitative imaging method,...
Quantitative magnetic resonance imaging (qMRI) estimates tissue-specific parameters from a set of di...
Quantitative T <sub>2</sub> measurements are sensitive to intra- and extracellular wate...
International audiencePurpose: Performing simultaneous quantitative MRI at ultra-high field is chall...
Relaxation rates provide important information about tissue microstructure. Multi-parameter mapping ...
Relaxation rates provide important information about tissue microstructure. Multi-parameter mapping ...
We have recently proposed a new optimization algorithm called SPARKLING (Spreading Projection Algori...
Multicenter clinical and quantitative magnetic resonance imaging (qMRI) studies require a high degre...
This study aims to develop a silent, fast and 3D method for T1 and proton density (PD) mapping, whil...
Purpose : To investigate the ability of simultaneous multislice triple-echo steady-state (SMS- TESS)...
International audienceWe have recently proposed a new optimization algorithm called SPARKLING (Sprea...