Oxygen enhancement ratio as a function of dose and cell cycle phase for radiation-resistant and sensitive CHO cells.
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J P Freyer | M R Raju | J. Freyer | S Carpenter | K Jarrett | M. R. Raju | S. Carpenter | K. Jarrett
[1] K H Chadwick,et al. A molecular theory of cell survival. , 1973, Physics in medicine and biology.
[2] A. Giaccia,et al. Cell-cycle-dependent repair of potentially lethal damage in the XR-1 gamma-ray-sensitive Chinese hamster ovary cell. , 1988, Radiation research.
[3] C. Koch,et al. Oxygen dependence of product formation in irradiated adenosine 5'-monophosphate. , 1988, Radiation research.
[4] P. Jeggo,et al. Biphasic survival curves for XRS radiosensitive cells: subpopulations or transient expression of repair competence? , 1989, International journal of radiation biology.
[5] B. Palcic,et al. Survival measurements at low doses: oxygen enhancement ratio. , 1982, British Journal of Cancer.
[6] P. Jeggo,et al. X-ray-sensitive mutants of Chinese hamster ovary cell line. Isolation and cross-sensitivity to other DNA-damaging agents. , 1983, Mutation research.
[7] N Albright,et al. Computer programs for the analysis of cellular survival data. , 1987, Radiation research.
[8] I. Radford. Effect of cell-cycle position and dose on the kinetics of DNA double-strand breakage repair in X-irradiated Chinese hamster cells. , 1987, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[9] E. Hall,et al. The oxygen effect and x-ray sensitivity in synchronously dividing cultures of Chinese hamster cells. , 1969, Radiation research.
[10] J. Brown,et al. Radiosensitization of hypoxic cells in vivo by SR 2508 at low radiation doses: a preliminary report. , 1984, International journal of radiation oncology, biology, physics.
[11] B Palcic,et al. The use of solid-state image sensor technology to detect and characterize live mammalian cells growing in tissue culture. , 1986, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[12] C. Koch,et al. Measurement of low levels of oxygen and their effect on respiration in cell suspensions maintained in an open system. , 1986, Radiation research.
[13] J P Freyer,et al. A reduction in the in situ rates of oxygen and glucose consumption of cells in EMT6/Ro spheroids during growth , 1985, Journal of cellular physiology.
[14] B Palcic,et al. Reduced oxygen enhancement ratio at low doses of ionizing radiation. , 1984, Radiation research.
[15] Y. Taylor,et al. Radiosensitization in multifraction schedules. I. Evidence for an extremely low oxygen enhancement ratio. , 1987, Radiation research.
[16] B. Palcic,et al. Radiosensitization of hypoxic cells at low doses. , 1986, International journal of radiation oncology, biology, physics.
[17] R. Warters,et al. Cell cycle effect on the induction of DNA double-strand breaks by X rays. , 1988, Radiation research.
[18] J P Freyer,et al. A simple electronic volume cell sorter for clonogenicity assays. , 1989, Cytometry.
[19] B. Palcic,et al. Radiation dose dependence of the sensitization by oxygen and oxygen mimic sensitizers. , 1985, Acta radiologica. Oncology.
[20] B. Palcic,et al. Oxygen enhancement ratio of fractionated regimens in vitro. , 1989, Radiation Research.
[21] E. Pettersen,et al. A change in the oxygen effect throughout the cell-cycle of human cells of the line NHIK 3025 cultivated in vitro. , 1977, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[22] P. Jeggo,et al. X-ray sensitive mutants of Chinese hamster ovary cells defective in double-strand break rejoining. , 1984, Mutation research.
[23] J. Freyer,et al. Rapid assay for cell age response to radiation by electronic volume flow cell sorting. , 1987, International journal of radiation biology and related studies in physics, chemistry, and medicine.
[24] W. K. Sinclair,et al. X-ray sensitivity of synchronized Chinese hamster cells irradiated during hypoxia. , 1968, Radiation research.