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1 0 patients with CAD and 10 controls by using electron spin resonance spectroscopy.
2 ha-phenyl-N-tert-butyl-nitrone (PBN) through electron spin resonance spectroscopy.
3 hemichromes which have been characterized by electron spin resonance spectroscopy.
4 ker, and we characterize these structures by electron spin resonance spectroscopy.
5 nd in Folch extracts of pancreatic tissue by electron spin resonance spectroscopy.
6 f the gold core, as determined by conduction electron spin resonance spectroscopy.
7 unlabeled), as revealed by matrix isolation electron spin resonance spectroscopy.
8 ble-temperature kinetic measurements, X-band electron spin resonance spectroscopy, (1)H NMR relaxatio
11 tal guinea pig brain utilizing techniques of electron spin resonance spectroscopy and alpha-phenyl-te
13 tants small enough to be measured by dynamic electron spin resonance spectroscopy and show charge tra
16 by molecular biology/biochemical techniques, electron spin resonance spectroscopy, and flow cytometry
17 ctin receptor FepA was observed in vivo with electron spin resonance spectroscopy by monitoring the m
18 [6,6] Sc3N@C80 benzoadducts were studied by electron spin resonance spectroscopy, density functional
19 uorescence resonance energy transfer (FRET), electron spin resonance spectroscopy (ESR), and electron
20 techniques, including electron diffraction, electron spin resonance spectroscopy (ESR), magnetic and
21 OBN/*CO(2)(-) radical adduct provides direct electron spin resonance spectroscopy evidence for the fo
23 )2(O=13C=CHSiMe3)(C5Me5) has been studied by electron spin resonance spectroscopy in toluene solution
24 ced superoxide release which was detected by electron spin resonance spectroscopy in wild-type PASMCs
28 directly detected in explanted allografts by electron spin resonance spectroscopy on day 6 after tran
35 arable to the fluorescence lifetime, we used electron spin resonance spectroscopy to unequivocally es
36 by a NO(.)-specific microelectrode or by an electron spin resonance spectroscopy using Fe(2+)-(DETC)
37 tructure prediction, molecular modeling, and electron spin resonance spectroscopy using site-directed
40 d chromatography, UV-visible absorption, and electron spin resonance spectroscopies, we investigated
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