Magnetic resonance imaging(MRI) is moving towards higher and higher field strengths. After 1.5T MRI scanners became commonplace, 3T scanners were introduced and once 3T scanners became commonplace, ultra high field (UHF) scanners were introduced. UHF scanners typically refer to scanners with a field strength of 7T or higher. The number of sites that utilise UHF scanners is slowly growing and the first 7T MRI scanners were recently CE certified for clinical use. Although UHF scanners have the benefit of higher signal-to-noise ratio (SNR), they come with their own challenges. One of the many challenges is the problem of inhomogeneity of the main static magnetic field(B0 field). This thesis addresses multiple aspects associated with the pro...
Purpose/Introduction: Improved shimming the human brain has attracted increasing interest in the rec...
The aim of this work was to develop and optimise techniques for improving the magnetic-field homogen...
RÉSUMÉ: Bien qu'apportant de nombreux bénéfices en termes de qualité d'image, l'IRM à très hauts cha...
Magnetic resonance imaging(MRI) is moving towards higher and higher field strengths. After 1.5T MRI ...
Magnetic resonance imaging (MRI) is moving towards higher and higher eld strengths. After 1.5T MRI s...
Magnetic resonance imaging (MRI) is widely used for contemporary diagnostics and research. Higher st...
Magnetic resonance imaging (MRI) is widely used for contemporary diagnostics and research. Higher st...
Magnetic resonance imaging (MRI) is a non-invasive tomographic imaging technique and a powerful tool...
The homogenization of static magnetic field (B0) is necessary for MR imaging. The unwanted B0 inhomo...
International audienceWe exploit the inter-subject similarity of inhomogeneous static magnetic field...
Magnetic resonance imaging requires a homogeneous B0 magnetic field, however the field is often dist...
Objective: As the MRI main magnetic field rises for improved Signalto-Noise Ratio, susceptibility-in...
Purpose/Introduction: B0 inhomogeneities are caused by susceptibility differences between air and ne...
Abstract Object Improve shimming capabilities of ultra-h...
High performance gradient and shim coils are highly interested for high-field magnetic resonance ima...
Purpose/Introduction: Improved shimming the human brain has attracted increasing interest in the rec...
The aim of this work was to develop and optimise techniques for improving the magnetic-field homogen...
RÉSUMÉ: Bien qu'apportant de nombreux bénéfices en termes de qualité d'image, l'IRM à très hauts cha...
Magnetic resonance imaging(MRI) is moving towards higher and higher field strengths. After 1.5T MRI ...
Magnetic resonance imaging (MRI) is moving towards higher and higher eld strengths. After 1.5T MRI s...
Magnetic resonance imaging (MRI) is widely used for contemporary diagnostics and research. Higher st...
Magnetic resonance imaging (MRI) is widely used for contemporary diagnostics and research. Higher st...
Magnetic resonance imaging (MRI) is a non-invasive tomographic imaging technique and a powerful tool...
The homogenization of static magnetic field (B0) is necessary for MR imaging. The unwanted B0 inhomo...
International audienceWe exploit the inter-subject similarity of inhomogeneous static magnetic field...
Magnetic resonance imaging requires a homogeneous B0 magnetic field, however the field is often dist...
Objective: As the MRI main magnetic field rises for improved Signalto-Noise Ratio, susceptibility-in...
Purpose/Introduction: B0 inhomogeneities are caused by susceptibility differences between air and ne...
Abstract Object Improve shimming capabilities of ultra-h...
High performance gradient and shim coils are highly interested for high-field magnetic resonance ima...
Purpose/Introduction: Improved shimming the human brain has attracted increasing interest in the rec...
The aim of this work was to develop and optimise techniques for improving the magnetic-field homogen...
RÉSUMÉ: Bien qu'apportant de nombreux bénéfices en termes de qualité d'image, l'IRM à très hauts cha...