In Magnetic Resonance Tomography (MRT) image contrast can be improved by adding paramagnetic relaxation agents such as lanthanide ions. Here we report on the use of highly paramagnetic isostructural FeIII/4f coordination clusters with a [Fe10Ln10] core to enhance relaxation. Measurements were performed over the range of 1H Larmor frequencies of 10 MHz to 1.4 GHz in order to determine the relevant parameters for longitudinal and transverse relaxivities. Variation of the lanthanide ion allows differentiation of relaxation contributions from electronic states and molecular dynamics. We find that the transverse relaxivities increase with field, whereas the longitudinal relaxivities depend on the nature of the lanthanide. In addition, the GdIII ...
The work presented in the thesis is focused on the design of highly efficient contrast agents for mo...
International audienceWe have identified a pair of structurally similar iron complexes in the oxidat...
Magnetic Resonance Imaging (MRI) offers an amazing number of ways to probe the human body. It is a w...
In Magnetic Resonance Tomography (MRT) image contrast can be improved by adding paramagnetic relaxat...
International audienceNuclear magnetic relaxation dispersion (NMRD) profiles are essential tools to ...
Nuclear magnetic relaxation in the presence of paramagnetic centres has gained increasing interest i...
Paramagnetic metal ions with anisotropic magnetic susceptibilities can shift the proton NMR signals ...
This PhD thesis has two major purposes. The first goal is to propose a robust method based on a well...
Nuclear Magnetic Resonance relaxivities are a measure for the sensitivity of a contrast agent (CA), ...
An increasing awareness about novel medical applications of smaller, inorganic-based nanoparticles, ...
An increasing awareness about novel medical applications of smaller, inorganic-based nanoparticles, ...
The desire to improve and expand the scope of clinical magnetic resonance imaging (MRI) has prompted...
Fluorine MRI ((19) F MRI) is receiving an increasing attention as a viable alternative to proton-bas...
The focus of this thesis is to produce highly polarised Nuclear Magnetic Resonance (NMR) samples for...
[Abstract] Understanding the relationship between chemical structure and the effectiveness of biores...
The work presented in the thesis is focused on the design of highly efficient contrast agents for mo...
International audienceWe have identified a pair of structurally similar iron complexes in the oxidat...
Magnetic Resonance Imaging (MRI) offers an amazing number of ways to probe the human body. It is a w...
In Magnetic Resonance Tomography (MRT) image contrast can be improved by adding paramagnetic relaxat...
International audienceNuclear magnetic relaxation dispersion (NMRD) profiles are essential tools to ...
Nuclear magnetic relaxation in the presence of paramagnetic centres has gained increasing interest i...
Paramagnetic metal ions with anisotropic magnetic susceptibilities can shift the proton NMR signals ...
This PhD thesis has two major purposes. The first goal is to propose a robust method based on a well...
Nuclear Magnetic Resonance relaxivities are a measure for the sensitivity of a contrast agent (CA), ...
An increasing awareness about novel medical applications of smaller, inorganic-based nanoparticles, ...
An increasing awareness about novel medical applications of smaller, inorganic-based nanoparticles, ...
The desire to improve and expand the scope of clinical magnetic resonance imaging (MRI) has prompted...
Fluorine MRI ((19) F MRI) is receiving an increasing attention as a viable alternative to proton-bas...
The focus of this thesis is to produce highly polarised Nuclear Magnetic Resonance (NMR) samples for...
[Abstract] Understanding the relationship between chemical structure and the effectiveness of biores...
The work presented in the thesis is focused on the design of highly efficient contrast agents for mo...
International audienceWe have identified a pair of structurally similar iron complexes in the oxidat...
Magnetic Resonance Imaging (MRI) offers an amazing number of ways to probe the human body. It is a w...