Purpose To develop a 3D MR technique to simultaneously acquire proton multiparametric maps (T-1, T-2, and proton density) and sodium density weighted images over the whole brain. Methods We implemented a 3D stack-of-stars MR pulse sequence which consists of interleaved proton (H-1) and sodium (Na-23) excitations, tailored slice encoding gradients that can encode the same slice for both nuclei, and simultaneous readout with different radial trajectories (H-1, full-radial; Na-23, center-out radial). The receive chain of our 7T scanner was modified to enable simultaneous acquisition of H-1 and Na-23 signal. A heuristically optimized flip angle train was implemented for proton MR fingerprinting (MRF). The SNR and the accuracy of proton T-1 and ...
PurposeTo implement an accelerated MR-acquisition method allowing to map T2∗ relaxation and absolute...
Purpose Macromolecular proton fraction (MPF) mapping is a quantitative MRI method that reconstructs ...
Sodium magnetic resonance imaging (MRI) can provide complementary information to proton MRI. However...
International audiencePurpose: Performing simultaneous quantitative MRI at ultra-high field is chall...
In this thesis, the development of a framework for simultaneous sodium (23Na) mapping of T1, T2l*, T...
The presented dataset provides a normative high-resolution three-dimensional (3D) macromolecular pro...
Objective: Application of high-field 4.23 T MRI clinical imager was demonstrated for sodium-magnetic...
This thesis describes the development of both hardware and software techniques that increase the sen...
The goal of this work was to provide techniques and hardware for 23Na MRI of the human brain, heart ...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
© 2018 Yasmin BlunckOver the last decades, Magnetic Resonance Imaging (MRI) has undergone a high-pac...
Submitted to Magnetic Resonance in MedicinePurpose: To evaluate the benefits of SPARKLING, a stochas...
PurposeTo develop a 3D multitasking multi-echo (MT-ME) technique for the comprehensive characterizat...
Purpose Sodium ( 23 Na) multi‐quantum coherences (MQC) MRI was accelerated using three‐dimensional (...
PurposeTo implement an accelerated MR-acquisition method allowing to map T2∗ relaxation and absolute...
Purpose Macromolecular proton fraction (MPF) mapping is a quantitative MRI method that reconstructs ...
Sodium magnetic resonance imaging (MRI) can provide complementary information to proton MRI. However...
International audiencePurpose: Performing simultaneous quantitative MRI at ultra-high field is chall...
In this thesis, the development of a framework for simultaneous sodium (23Na) mapping of T1, T2l*, T...
The presented dataset provides a normative high-resolution three-dimensional (3D) macromolecular pro...
Objective: Application of high-field 4.23 T MRI clinical imager was demonstrated for sodium-magnetic...
This thesis describes the development of both hardware and software techniques that increase the sen...
The goal of this work was to provide techniques and hardware for 23Na MRI of the human brain, heart ...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
Sodium is the second most abundant MR-active nucleus in the human body and is of fundamental importa...
© 2018 Yasmin BlunckOver the last decades, Magnetic Resonance Imaging (MRI) has undergone a high-pac...
Submitted to Magnetic Resonance in MedicinePurpose: To evaluate the benefits of SPARKLING, a stochas...
PurposeTo develop a 3D multitasking multi-echo (MT-ME) technique for the comprehensive characterizat...
Purpose Sodium ( 23 Na) multi‐quantum coherences (MQC) MRI was accelerated using three‐dimensional (...
PurposeTo implement an accelerated MR-acquisition method allowing to map T2∗ relaxation and absolute...
Purpose Macromolecular proton fraction (MPF) mapping is a quantitative MRI method that reconstructs ...
Sodium magnetic resonance imaging (MRI) can provide complementary information to proton MRI. However...