Electron Paramagnetic Resonance (EPR Oxygen Images (EPROI) have been shown to provide quantitative localized PO2 images of animal tumors including several in syngeneic mice, and in rats, and rabbits. The oxygen broadening of narrow EPR spectral lines report the PO2 with 1-3 torr resolution in each 1mm3 image voxeL This work has shown i) the first co-localized correlation between an oxygen image and a point oxygen measurement technique (Oxylite) 2) independent, statistically significant sharpening of the 50% tumor control dose with the addition of the information provided by the fraction of EPROI voxels less than io torr (HFio) 3) co-registration of pimonidazole images nth EPROI PO2 and 4) significant spatial correlation of VEOF and EPROI based HEw. We propose the following specific aims for the given cycle: i) Determining the relation between the localized oxygen information from the EPROI and pimonidazole retention and induction of hypoxia proteins, 2) Treatment of murine tumors to TCDSO after oxygen images and determining the predictive effectiveness of the HFio and other EPROT tumor statistics.
This work continues the investigation of a new technique to predict cure likelihood of the radiation of cancers and investigate the use of the technique to improve the cure of cancers with radiation. The technique involves a non-invasive electron magnetic resonance image of animal tumors after the injection of a non-toxic compound which reports through its electron magnetic resonance spectrum, the amount of oxygen in each of the 1mm3 volumes of a tumor. This eventually will be developed for human tumor measurements,
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