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Jean-Marc Idée

Researcher at Guerbet

Publications -  63
Citations -  5328

Jean-Marc Idée is an academic researcher from Guerbet. The author has contributed to research in topics: Gadolinium & Gadodiamide. The author has an hindex of 31, co-authored 63 publications receiving 4838 citations. Previous affiliations of Jean-Marc Idée include Pierre-and-Marie-Curie University.

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Recent advances in iron oxide nanocrystal technology for medical imaging

TL;DR: Stem cell migration and immune cell trafficking, as well as targeted iron oxide nanoparticles for molecular imaging studies, are at the stage of proof of concept, mainly in animal models.
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Clinical and biological consequences of transmetallation induced by contrast agents for magnetic resonance imaging: a review

TL;DR: There is increasing evidence that transmetallation can be found in vivo, in the case of certain CAs (especially linear chelates), with body cations such as zinc, calcium or iron.
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Efficiency, thermodynamic and kinetic stability of marketed gadolinium chelates and their possible clinical consequences: a critical review

TL;DR: A high kinetic stability provided by the macrocyclic structure combined with a high thermodynamic stability (reinforced by ionicity for macro cyclic chelates) will minimize the amount of free gadolinium released in tissue parenchymas.
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Preclinical Safety and Pharmacokinetic Profile of Ferumoxtran-10, an Ultrasmall Superparamagnetic Iron Oxide Magnetic Resonance Contrast Agent

TL;DR: The preclinical pharmacokinetic and safety profile of ferumoxtran-10 appears to be satisfactory in view of its proposed use as a single-dose diagnostic agent in human for MR imaging of lymph nodes.
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Reactive oxygen species and the pathogenesis of radiocontrast-induced nephropathy.

TL;DR: Clinical studies indeed support the possibility of a protective effect of ROS scavenging or reduced ROS formation with the administration of N-acetyl cysteine and bicarbonate infusion, respectively, and preventive strategies conceivably should include inhibition of ROS generation or ROS scavenges.