Simultaneous molecular imaging of redox reactions monitored by Overhauser-enhanced MRI with 14N- and 15N-labeled nitroxyl radicals
暂无分享,去创建一个
Shingo Matsumoto | Hideo Utsumi | Ken-ichi Yamada | S. Matsumoto | H. Utsumi | K. Sakai | Kazuhiro Ichikawa | Ken‐ichi Yamada | Kiyoshi Sakai | Yuichi Kinoshita | Mika Nagai | K. Ichikawa | Yuichi Kinoshita | Mika Nagai
[1] Kecheng Liu,et al. Dynamic in vivo oxymetry using overhauser enhanced MR imaging , 2000, Journal of magnetic resonance imaging : JMRI.
[2] J. Chambron,et al. Dynamic nuclear polarization with nitroxides dissolved in biological fluids. , 1995, Journal of magnetic resonance. Series B.
[3] H. Utsumi,et al. A new nitroxyl-probe with high retention in the brain and its application for brain imaging. , 2000, Free radical biology & medicine.
[4] James B. Mitchell,et al. Noninvasive imaging of tumor redox status and its modification by tissue glutathione levels. , 2002, Cancer research.
[5] James B. Mitchell,et al. A Phase I Study of Topical Tempol for the Prevention of Alopecia Induced by Whole Brain Radiotherapy , 2004, Clinical Cancer Research.
[6] J. Zweier,et al. Polynitroxyl-albumin (PNA) enhances myocardial infarction therapeutic effect of tempol in rat hearts subjected to regional ischemia-reperfusion. , 2002, Free radical biology & medicine.
[7] Sanjiv Sam Gambhir,et al. Molecular imaging applications for immunology. , 2004, Clinical immunology.
[8] H. Utsumi,et al. Antioxidant activity of nitroxide radicals in lipid peroxidation of rat liver microsomes. , 1993, Archives of biochemistry and biophysics.
[9] Harold M. Swartz,et al. Nitroxide Spin Labels: Reactions in Biology and Chemistry , 1995 .
[10] David J. Lurie,et al. Proton-electron double magnetic resonance imaging of free radical solutions , 1988 .
[11] Sentaro Takahashi,et al. Assessment of ESR-CT imaging by comparison with autoradiography for the distribution of a blood-brain-barrier permeable spin probe, MC-PROXYL, to rodent brain. , 2003, Magnetic resonance imaging.
[12] Sergey Petryakov,et al. Development of a PEDRI free‐radical imager using a 0.38 T clinical MRI system , 2002, Magnetic resonance in medicine.
[13] Yuanmu Deng,et al. EPR/NMR co‐imaging for anatomic registration of free‐radical images , 2002, Magnetic resonance in medicine.
[14] Zhengxu Cai,et al. A Study of the Favorskii Rearrangement with 3-Bromo-4-oxo-2,2,6,6-tetramethylpiperidine-1-oxyl , 1995 .
[15] H. Utsumi,et al. Reversible half-wave potentials of reduction processes on nitroxide radicals , 1995 .
[16] H J Halpern,et al. Diminished aqueous microviscosity of tumors in murine models measured with in vivo radiofrequency electron paramagnetic resonance. , 1999, Cancer research.
[17] M. Foster,et al. The application of PEDRI to the study of free radicals in vivo. , 1998, Physics in medicine and biology.
[18] James B. Mitchell,et al. Kinetics and mechanism of hydroxyl radical and OH-adduct radical reactions with nitroxides and with their hydroxylamines. , 2002, Journal of the American Chemical Society.
[19] H J Halpern,et al. In vivo spin-label murine pharmacodynamics using low-frequency electron paramagnetic resonance imaging. , 1996, Biophysical journal.
[20] H. Utsumi,et al. Application of in vivo ESR spectroscopy to measurement of cerebrovascular ROS generation in stroke. , 2003 .
[21] K. Yasukawa,et al. Non-invasive Analysis of Reactive Oxygen Species Generated in NH4OH-induced Gastric Lesions of Rats using a 300 MHz In Vivo ESR Technique , 2003, Free radical research.
[22] H. Utsumi,et al. In vivo oxygen radical generation in the skin of the protoporphyria model mouse with visible light exposure: an L-band ESR study. , 2004, The Journal of investigative dermatology.
[23] Mitsuhiro Ono,et al. A composite resonator assembly suitable for EPR/NMR coregistration imaging , 2005 .
[24] James B. Mitchell,et al. Radio frequency continuous‐wave and time‐domain EPR imaging and Overhauser‐enhanced magnetic resonance imaging of small animals: instrumental developments and comparison of relative merits for functional imaging , 2004, NMR in biomedicine.
[25] G Placidi,et al. New experimental apparatus for multimodal resonance imaging: initial EPRI and NMRI experimental results. , 2001, Physics in medicine and biology.
[26] S. Gambhir,et al. Molecular imaging in living subjects: seeing fundamental biological processes in a new light. , 2003, Genes & development.
[27] H. Kamada,et al. Development of an L-band electron spin resonance/proton nuclear magnetic resonance imaging instrument , 1997 .
[28] James B. Mitchell,et al. Do Nitroxide Antioxidants Act as Scavengers of O2 or as SOD Mimics?* , 1996, The Journal of Biological Chemistry.
[29] H. Utsumi,et al. Synthesis and imaging of blood‐brain‐barrier permeable nitroxyl‐probes for free radical reactions in brain of living mice , 1997, Biochemistry and molecular biology international.
[30] J. Dunn,et al. Use of nitroxides for assessing perfusion, oxygenation, and viability of tissues: In vivo EPR and MRI studies , 1996, Magnetic resonance in medicine.
[31] H. Utsumi,et al. Interaction of spin-labeled lysophosphatidylcholine with rabbit erythrocytes. , 1978, Biochemistry.
[32] H. Utsumi,et al. In vivo ESR studies of antioxidant activity on free radical reaction in living mice under oxidative stress. , 1995, Free radical research.
[33] Jan H. Ardenkjær-Larsen,et al. Molecular imaging with endogenous substances , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[34] James B. Mitchell,et al. Overhauser enhanced magnetic resonance imaging for tumor oximetry: Coregistration of tumor anatomy and tissue oxygen concentration , 2002, Proceedings of the National Academy of Sciences of the United States of America.
[35] S. Hahn,et al. Evaluation of tempol radioprotection in a murine tumor model. , 1997, Free radical biology & medicine.