An elevated- temperature polyol-based colloidal-chemistry approach allows for the development of size-tunable (50 and 86 nm) assemblies of maghemite iso-oriented nanocrystals, with enhanced magnetization. H-1-nuclear magnetic resonance (NMR) relaxometric experiments show that the ferrimagnetic cluster-like colloidal entities exhibit a remarkable enhancement (4-5 times) in transverse relaxivity when compared to that of the superparamagnetic contrast agent Endorem (R), over an extended frequency range (1-60 MHz). The marked increase in the transverse relaxivity r(2) at a clinical magnetic field strength (similar to 1.41 T), which is 405.1 and 508.3 mM(-1) s(-1) for small and large assemblies, respectively, makes it possible to relate the obse...
© 2017 Elsevier B.V. The present work introduces an impact of polyelectrolyte-based hydrophilic shel...
Maghemite particles are used as T₂ contrast agents for magnetic resonance imaging, especially for mo...
Colloidal magnetic nanoparticles (MNPs) based on a nearly monodisperse iron oxide core and capped by...
An elevated- temperature polyol-based colloidal-chemistry approach allows for the development of siz...
Novel systems based on colloidal magnetic nanocrystals (NCs), potentially useful as superparamagneti...
An increasing awareness about novel medical applications of smaller, inorganic-based nanoparticles, ...
Novel systems based on colloidal magnetic nanocrystals (NCs), potentially useful as superparamagneti...
An increasing awareness about novel medical applications of smaller, inorganic-based nanoparticles, ...
International audienceMagnetic resonance imaging (MRI) is at the forefront of non-invasive medical i...
Magnetic resonance imaging (MRI) is at the forefront of non-invasive medical imaging techniques. It ...
Novel systems based on suspensions of colloidal magnetic nanoparticles have been investi-gated as pe...
Novel systems based on suspensions of colloidal magnetic nanoparticles have been investi-gated as pe...
We report cell endocytosis, drug release, NMR relaxometry and in vitro MRI studies on a novel class ...
One- or two-dimensional arrays of iron oxide nanoparticles were formed in colloidal assemblies of am...
International audienceMagnetic particles are very efficient magnetic resonance imaging (MRI) contras...
© 2017 Elsevier B.V. The present work introduces an impact of polyelectrolyte-based hydrophilic shel...
Maghemite particles are used as T₂ contrast agents for magnetic resonance imaging, especially for mo...
Colloidal magnetic nanoparticles (MNPs) based on a nearly monodisperse iron oxide core and capped by...
An elevated- temperature polyol-based colloidal-chemistry approach allows for the development of siz...
Novel systems based on colloidal magnetic nanocrystals (NCs), potentially useful as superparamagneti...
An increasing awareness about novel medical applications of smaller, inorganic-based nanoparticles, ...
Novel systems based on colloidal magnetic nanocrystals (NCs), potentially useful as superparamagneti...
An increasing awareness about novel medical applications of smaller, inorganic-based nanoparticles, ...
International audienceMagnetic resonance imaging (MRI) is at the forefront of non-invasive medical i...
Magnetic resonance imaging (MRI) is at the forefront of non-invasive medical imaging techniques. It ...
Novel systems based on suspensions of colloidal magnetic nanoparticles have been investi-gated as pe...
Novel systems based on suspensions of colloidal magnetic nanoparticles have been investi-gated as pe...
We report cell endocytosis, drug release, NMR relaxometry and in vitro MRI studies on a novel class ...
One- or two-dimensional arrays of iron oxide nanoparticles were formed in colloidal assemblies of am...
International audienceMagnetic particles are very efficient magnetic resonance imaging (MRI) contras...
© 2017 Elsevier B.V. The present work introduces an impact of polyelectrolyte-based hydrophilic shel...
Maghemite particles are used as T₂ contrast agents for magnetic resonance imaging, especially for mo...
Colloidal magnetic nanoparticles (MNPs) based on a nearly monodisperse iron oxide core and capped by...