In principle, all nuclei with nonzero spin can be employed for magnetic resonance imaging (MRI). Special scanner hardware and MR sequences are required to select the nucleus-specific frequency and to enable imaging with “sufficient” signal-to-noise ratio. This Special Issue starts with an overview of different nuclei that can be used for MRI today, followed by a review article about techniques required for imaging of quadrupolar nuclei with short relaxation times. Sequence developments to improve image quality and applications on different organs and diseases are presented for different nuclei (23Na, 35Cl, 17O, and 19F), with a focus on imaging at natural abundance
MR spectroscopy (MRS) reveals information about the molecular structures underlying the MR signal. P...
Sodium magnetic resonance imaging (23Na-MRI) is a highly promising imaging modality that offers the ...
The goal of this work was to provide techniques and hardware for 23Na MRI of the human brain, heart ...
In this review article, techniques for sodium (23Na) magnetic resonance imaging (MRI) are presented....
Sodium is a key element in a living organism. The increase of its concentration is an indicator of m...
Sodium is a key element in a living organism. The increase of its concentration is an indicator of m...
Sodium magnetic resonance imaging (MRI) can provide complementary information to proton MRI. However...
Sodium is a key element in a living organism. The increase of its concentration is an indicator of m...
© 2018 Yasmin BlunckOver the last decades, Magnetic Resonance Imaging (MRI) has undergone a high-pac...
With the expanding accessibility of ultrahigh field MRI frameworks, researching on non-proton nuclei...
This thesis describes the development of both hardware and software techniques that increase the sen...
Sodium (23Na) magnetic resonance imaging (MRI) provides valuable cellular and metabolic information....
Sodium (23Na) magnetic resonance imaging (MRI) provides valuable cellular and metabolic information....
This thesis describes the development of both hardware and software techniques that increase the sen...
MR spectroscopy (MRS) reveals information about the molecular structures underlying the MR signal. P...
MR spectroscopy (MRS) reveals information about the molecular structures underlying the MR signal. P...
Sodium magnetic resonance imaging (23Na-MRI) is a highly promising imaging modality that offers the ...
The goal of this work was to provide techniques and hardware for 23Na MRI of the human brain, heart ...
In this review article, techniques for sodium (23Na) magnetic resonance imaging (MRI) are presented....
Sodium is a key element in a living organism. The increase of its concentration is an indicator of m...
Sodium is a key element in a living organism. The increase of its concentration is an indicator of m...
Sodium magnetic resonance imaging (MRI) can provide complementary information to proton MRI. However...
Sodium is a key element in a living organism. The increase of its concentration is an indicator of m...
© 2018 Yasmin BlunckOver the last decades, Magnetic Resonance Imaging (MRI) has undergone a high-pac...
With the expanding accessibility of ultrahigh field MRI frameworks, researching on non-proton nuclei...
This thesis describes the development of both hardware and software techniques that increase the sen...
Sodium (23Na) magnetic resonance imaging (MRI) provides valuable cellular and metabolic information....
Sodium (23Na) magnetic resonance imaging (MRI) provides valuable cellular and metabolic information....
This thesis describes the development of both hardware and software techniques that increase the sen...
MR spectroscopy (MRS) reveals information about the molecular structures underlying the MR signal. P...
MR spectroscopy (MRS) reveals information about the molecular structures underlying the MR signal. P...
Sodium magnetic resonance imaging (23Na-MRI) is a highly promising imaging modality that offers the ...
The goal of this work was to provide techniques and hardware for 23Na MRI of the human brain, heart ...