Research into developing dual modality probes enabled for magnetic resonance imaging (MRI) and positron emission tomography (PET) has been on the rise recently due to the potential to combine the high resolution of MRI and the high sensitivity of PET. Current synthesis techniques for developing multimodal probes is largely hindered in part by prolonged reaction times during radioisotope incorporationleading to a weakening of the radioactivity. Along with a time-efficient synthesis, the resulting products must fit within a critical size range (between 20 and 100 nm) to increase blood retention time. In this work, we describe a novel, rapid, microwave-based synthesis technique to grow dextran-coated iron oxide nanoparticles doped with copper...
We report a highly reproducible route to synthesize iron oxide nanoparticles (IONPs) with control ov...
Iron oxide has been long recognized as an important source of chemical compounds for industrial and...
International audienceAbstract Superparamagnetic Iron Oxide Nanoparticles (SPIONs) are more and more...
Here, we present a comprehensive review on the use of microwave chemistry for the synthesis of iron-...
Combination of complementary imaging techniques, like hybrid PET/MRI, allows protocols to be develop...
Synthesizing iron oxide nanoparticles for positive contrast in magnetic resonance imaging is the mos...
Synthesizing iron oxide nanoparticles for positive contrast in magnetic resonance imaging is the mos...
Synthesizing iron oxide nanoparticles for positive contrast in magnetic resonance imaging is the mos...
The recent emergence of multimodality imaging, particularly the combination of PET and MRI, has led ...
The development of magnetite and maghemite particles in uniform nanometer size has triggered the int...
Iron oxide nanoparticles have long been studied as a T-2 contrast agent in MRI due to their superpar...
Iron oxide nanoparticles have long been studied as a T2 contrast agent in MRI due to their superpara...
Uniform iron oxide magnetic nanoparticles have been synthesized using a microwave assisted synthesis...
We report a reproducible single-step, microwave-assisted approach for the preparation of multifuncti...
International audienceMagnetic iron oxide nanoparticles have been recognized for use in various prom...
We report a highly reproducible route to synthesize iron oxide nanoparticles (IONPs) with control ov...
Iron oxide has been long recognized as an important source of chemical compounds for industrial and...
International audienceAbstract Superparamagnetic Iron Oxide Nanoparticles (SPIONs) are more and more...
Here, we present a comprehensive review on the use of microwave chemistry for the synthesis of iron-...
Combination of complementary imaging techniques, like hybrid PET/MRI, allows protocols to be develop...
Synthesizing iron oxide nanoparticles for positive contrast in magnetic resonance imaging is the mos...
Synthesizing iron oxide nanoparticles for positive contrast in magnetic resonance imaging is the mos...
Synthesizing iron oxide nanoparticles for positive contrast in magnetic resonance imaging is the mos...
The recent emergence of multimodality imaging, particularly the combination of PET and MRI, has led ...
The development of magnetite and maghemite particles in uniform nanometer size has triggered the int...
Iron oxide nanoparticles have long been studied as a T-2 contrast agent in MRI due to their superpar...
Iron oxide nanoparticles have long been studied as a T2 contrast agent in MRI due to their superpara...
Uniform iron oxide magnetic nanoparticles have been synthesized using a microwave assisted synthesis...
We report a reproducible single-step, microwave-assisted approach for the preparation of multifuncti...
International audienceMagnetic iron oxide nanoparticles have been recognized for use in various prom...
We report a highly reproducible route to synthesize iron oxide nanoparticles (IONPs) with control ov...
Iron oxide has been long recognized as an important source of chemical compounds for industrial and...
International audienceAbstract Superparamagnetic Iron Oxide Nanoparticles (SPIONs) are more and more...