La fonctionnalité Article cité par… liste les citations d'un article. Ces citations proviennent de la base de données des articles de EDP Sciences, ainsi que des bases de données d'autres éditeurs participant au programme CrossRef Cited-by Linking Program. Vous pouvez définir une alerte courriel pour être prévenu de la parution d'un nouvel article citant " cet article (voir sur la page du résumé de l'article le menu à droite).
Liquid state DNP of water at 9.2 T: an experimental access to saturation
Petr Neugebauer, Jan G. Krummenacker, Vasyl P. Denysenkov, et al. Physical Chemistry Chemical Physics 15(16) 6049 (2013) https://doi.org/10.1039/c3cp44461a
Translational Dynamics of Water at the Phospholipid Interface
Ken G. Victor, Jean-Pierre Korb and Robert G. Bryant The Journal of Physical Chemistry B 117(41) 12475 (2013) https://doi.org/10.1021/jp407149h
1H relaxation dispersion in solutions of nitroxide radicals: Influence of electron spin relaxation
1H and 17O NMR Relaxometric and Computational Study on Macrocyclic Mn(II) Complexes
Gabriele A. Rolla, Carlos Platas-Iglesias, Mauro Botta, Lorenzo Tei and Lothar Helm Inorganic Chemistry 52(6) 3268 (2013) https://doi.org/10.1021/ic302785m
Intermolecular Spin Relaxation and Translation Diffusion in Liquids and Polymer Melts: Insight from Field‐Cycling 1H NMR Relaxometry
Model-free nuclear magnetic resonance study of intermolecular free energy landscapes in liquids with paramagnetic Ln3+ spotlights: Theory and application to Arg-Gly-Asp
New simulation approach using classical formalism to water nuclear magnetic relaxation dispersions in presence of superparamagnetic particles used as MRI contrast agents
How cellular processing of superparamagnetic nanoparticles affects their magnetic behavior and NMR relaxivity
Michael Lévy, Claire Wilhelm, Martin Devaud, Pierre Levitz and Florence Gazeau Contrast Media & Molecular Imaging 7(4) 373 (2012) https://doi.org/10.1002/cmmi.504
Quantitative analysis of high field liquid state dynamic nuclear polarization
P. J. M. van Bentum, G. H. A. van der Heijden, J. A. Villanueva-Garibay and A. P. M. Kentgens Physical Chemistry Chemical Physics 13(39) 17831 (2011) https://doi.org/10.1039/c1cp22002k
Singlet state relaxation via intermolecular dipolar coupling
Outer-Sphere Investigation of MRI Relaxation Contrast Agents. Example of a Cyclodecapeptide Gadolinium Complex with Second-Sphere Water
Célia S. Bonnet, Pascal H. Fries, Serge Crouzy and Pascale Delangle The Journal of Physical Chemistry B 114(26) 8770 (2010) https://doi.org/10.1021/jp101443v
Enhancement of the water proton relaxivity by trapping Gd3+ complexes in nanovesicles
Poly(d,l-lactide-co-glycolide) coated superparamagnetic iron oxide nanoparticles: Synthesis, characterization and in vivo study as MRI contrast agent
Daksha Patel, Je Yong Moon, Yongmin Chang, Tae Jeong Kim and Gang Ho Lee Colloids and Surfaces A: Physicochemical and Engineering Aspects 313-314 91 (2008) https://doi.org/10.1016/j.colsurfa.2007.04.078
A Rigorous Framework To Interpret Water Relaxivity. The Case Study of a Gd(III) Complex with an α-Cyclodextrin Derivative
Célia S. Bonnet, Pascal H. Fries, Andrée Gadelle, Serge Gambarelli and Pascale Delangle Journal of the American Chemical Society 130(31) 10401 (2008) https://doi.org/10.1021/ja802347r
Magnetic Iron Oxide Nanoparticles: Synthesis, Stabilization, Vectorization, Physicochemical Characterizations, and Biological Applications
Interaction of Water with the Model Ionic Liquid [bmim][BF4]: Molecular Dynamics Simulations and Comparison with NMR Data
Margherita Moreno, Franca Castiglione, Andrea Mele, Carlo Pasqui and Guido Raos The Journal of Physical Chemistry B 112(26) 7826 (2008) https://doi.org/10.1021/jp800383g
Frequency autocorrelation function of stochastically fluctuating fields caused by specific magnetic field inhomogeneities
Oxygen Accessibility to Ribonuclease A: Quantitative Interpretation of Nuclear Spin Relaxation Induced by a Freely Diffusing Paramagnet
Ching-Ling Teng, Brian Hinderliter and Robert G. Bryant The Journal of Physical Chemistry A 110(2) 580 (2006) https://doi.org/10.1021/jp0526593
Lanthanide Complexes of a Picolinate Ligand Derived from 1,4,7‐Triazacyclononane with Potential Application in Magnetic Resonance Imaging and Time‐Resolved Luminescence Imaging
Aline Nonat, Christelle Gateau, Pascal H. Fries and Marinella Mazzanti Chemistry – A European Journal 12(27) 7133 (2006) https://doi.org/10.1002/chem.200501390
Nuclear Spin Relaxation Driven by Intermolecular Dipolar Interactions: The Role of Solute−Solvent Pair Correlations in the Modeling of Spectral Density Functions
Diego Frezzato, Federico Rastrelli and Alessandro Bagno The Journal of Physical Chemistry B 110(11) 5676 (2006) https://doi.org/10.1021/jp0560157
Electronic relaxation of paramagnetic metal ions and NMR relaxivity in solution: Critical analysis of various approaches and application to a Gd(III)-based contrast agent
Gaussian approximation in the theory of MR signal formation in the presence of structure-specific magnetic field inhomogeneities. Effects of impermeable susceptibility inclusions
The preparation of magnetic nanoparticles for applications in biomedicine
Pedro Tartaj, Mar a del Puerto Morales, Sabino Veintemillas-Verdaguer, Teresita Gonz lez-Carre o and Carlos J Serna Journal of Physics D: Applied Physics 36(13) R182 (2003) https://doi.org/10.1088/0022-3727/36/13/202
A 19F relaxometric study of the competition of Gd(III) and Lu(III) towards DTPA in water
The rotational motion and electronic relaxation of the Gd(III) aqua complex in water revisited through a full proton relaxivity study of a probe solute
P. H. Fries, G. Ferrante, E. Belorizky and S. Rast The Journal of Chemical Physics 119(16) 8636 (2003) https://doi.org/10.1063/1.1612914
Cross-relaxation between macromolecular and solvent spins: The role of long-range dipole couplings
Intermolecular nuclear relaxation in paramagnetic solutions: from free radicals to rare earths
Élie Belorizky, Pascal H. Fries and Sebastian Rast Comptes Rendus de l'Académie des Sciences - Series IIC - Chemistry 4(11) 825 (2001) https://doi.org/10.1016/S1387-1609(01)01332-9
On T2‐shortening by weakly magnetized particles: The chemical exchange model†
Rodney A. Brooks, Francis Moiny and Pierre Gillis Magnetic Resonance in Medicine 45(6) 1014 (2001) https://doi.org/10.1002/mrm.1135
Mechanisms of the Intermolecular Nuclear Magnetic Relaxation Dispersion of the (CH3)4N+ Protons in Gd3+ Heavy-Water Solutions. Interest for the Theory of Magnetic Resonance Imaging
S. Rast, E. Belorizky, P. H. Fries and J. P. Travers The Journal of Physical Chemistry B 105(10) 1978 (2001) https://doi.org/10.1021/jp003686q
A general approach to the electronic spin relaxation of Gd(III) complexes in solutions. Monte Carlo simulations beyond the Redfield limit
S. Rast, P. H. Fries, E. Belorizky, A. Borel, L. Helm and A. E. Merbach The Journal of Chemical Physics 115(16) 7554 (2001) https://doi.org/10.1063/1.1392364
Molecular Oxygen Spin–Lattice Relaxation in Solutions Measured by Proton Magnetic Relaxation Dispersion
Ching-Ling Teng, Heedoek Hong, Suzanne Kiihne and Robert G. Bryant Journal of Magnetic Resonance 148(1) 31 (2001) https://doi.org/10.1006/jmre.2000.2219
1H DNP at 1.4 T of Water Doped with a Triarylmethyl-Based Radical
The effect of fast electronic relaxation times on the 1H and 7Li magnetic relaxation dispersion modulated by the translational encounter of cation/cation pairs
19F and 1H Magnetic Relaxation Dispersion Determination of the Translational Encounter between Ionic Salts and Nitroxide Free Radicals in Aqueous Solution
T. R. J. Dinesen, J. Seymour, L. McGowan, S. Wagner and R. G. Bryant The Journal of Physical Chemistry A 103(7) 782 (1999) https://doi.org/10.1021/jp984014r
EPR and DNP Properties of Certain Novel Single Electron Contrast Agents Intended for Oximetric Imaging