Keywords: |
immunohistochemistry; signal transduction; treatment outcome; treatment response; solid tumor; treatment planning; cancer radiotherapy; phenotype; tumor volume; genotype; editorial; clinical protocol; molecular imaging; hypoxia; regulatory mechanism; fluorodeoxyglucose f 18; computer assisted emission tomography; oxidative stress; misonidazole; observational study; tumor hypoxia; autoradiography; circulation time; membrane permeability; nitroimidazole; 2 (2 nitro 1h imidazol 1 yl) n (2,2,3,3,3 pentafluoropropyl)acetamide; compartment model; hydrophilicity; human; oxidation reduction potential; cupric ion; pet-mri scanner; physiological process; volume of distribution
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