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Tetrahedron Letters|April 26, 2011
On the Synthesis of 1,4,7-Tris(tert-butoxycarbonylmethyl)-1,4,7,10-tetraazacyclododecaneBhumasamudram Jagadish, Gayle L Brickert-Albrecht, Gary S Nichol, et al.
NMR in Biomedicine|August 14, 2021
Joint total variation-based reconstruction of multiparametric magnetic resonance images for mapping tissue typesShraddha Pandey, A David Snider, Wilfrido A Moreno, et al.
Quantitative Imaging in Medicine and Surgery|June 22, 2018
Quantification of sarcomatoid differentiation in renal cell carcinoma on magnetic resonance imagingDaniel Jeong, Natarajan Raghunand, Diego Hernando, et al.
AJR. American Journal of Roentgenology|September 3, 2020
Quantitative Measures of Background Parenchymal Enhancement Predict Breast Cancer RiskBethany L Niell, Mahmoud Abdalah, Olya Stringfield, et al.
Translational Oncology|June 29, 2012
Tumor Xenograft Response to Redox-Active Therapies Assessed by Magnetic Resonance Imaging Using a Thiol-Bearing DOTA Complex of GadoliniumGerald P Guntle, Bhumasamudram Jagadish, Eugene A Mash, et al.
Synthetic Communications|December 24, 2013
IMPROVED SYNTHESIS OF 10-(2-ALKYLAMINO-2-OXOETHYL)-1,4,7,10-TETRAAZACYCLODODECANE-1,4,7-TRIACETIC ACID DERIVATIVES BEARING ACID-SENSITIVE LINKERSBhumasamudram Jagadish, Tarik J Ozumerzifon, Sue A Roberts, et al.
Magnetic Resonance in Medicine|May 16, 2006
Redox-sensitive contrast agents for MRI based on reversible binding of thiols to serum albuminNatarajan Raghunand, Bhumasamudram Jagadish, Theodore P Trouard, et al.
Scientific Reports|February 16, 2021
Identification of sarcomatoid differentiation in renal cell carcinoma by machine learning on multiparametric MRIAsim Mazin, Samuel H Hawkins, Olya Stringfield, et al.
Magnetic Resonance in Medicine|January 13, 2006
High resolution pH(e) imaging of rat glioma using pH-dependent relaxivityMaria L Garcia-Martin, Gary V Martinez, Natarajan Raghunand, et al.
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