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In this paper, we review recent advances in the preclinical application of paramagnetic and fluorescent liposomes for noninvasive visualization of the molecular processes involved in tumor angiogenesis.
Images acquired late (10 20 min) after application of paramagnetic contrast agents provide a sensitive tool for detecting myocardial fibrosis or necrosis, which is distinguished by bright late-enhancement regions due to the increased volume of distribution and delayed washout of the contrast agent from affected myocardium [ 36].
Images acquired late (10 20 min) after application of paramagnetic contrast agents provide a sensitive tool for detection of myocardial fibrosis, which is distinguished by bright late enhancement regions where the contrast lingers in the extracellular spaces of scarred myocardium [ 62].
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Application of electron paramagnetic resonance spectroscopy to examination of the popular herbs used in food pointed out their paramagnetic properties.
The development and application of electron paramagnetic resonance instrumentation capable of in vivo spectroscopy and imaging of free radicals in human skin are reported.
On the experimental side, the major progress is due to the application of NMR paramagnetic relaxation enhancement (PRE), a technique that is exquisitely sensitive to the presence of lowly populated states in the fast exchange regime (Clore, 2008; Clore and Iwahara, 2009; Fawzi et al., 2010).
Recently, Muller et al. [91] comprehensively reviewed the applications of super paramagnetic iron oxide NPs as a contrast agent.
This is particularly important for in vivo applications enabling one to overcome the limiting stability of paramagnetic probes and sample overheating by reducing RF power deposition.
From these experiments, the spatial distribution of paramagnetic Mn2+ ions in the gel under the application of a 3 V DC electric field was obtained as a function of the elapsed time.
Early work focused on the application of the theories developed by Bleaney to understand the NMR spectra of paramagnetic lanthanide complexes with axially symmetric ligand environments.
The ordered "chain" structures of paramagnetic beads seen in Fig. 1B are remnant structures after application of an external magnetic field in order to magnetize microjet engines.
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