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International Journal of Radiation Biology|November 1, 1994
Half-life values for DNA double-strand break rejoining in yeast can vary by more than an order of magnitude depending on the irradiation conditionsM Frankenburg-Schwager, R Harbich, S Beckonert, et al.
Radiation and Environmental Biophysics|January 1, 1994
Evidence against the "oxygen-in-the-track" hypothesis as an explanation for the radiobiological low oxygen enhancement ratio at high linear energy transfer radiationM Frankenberg-Schwager, D Frankenberg, R Harbich, et al.
International Journal of Radiation Biology|June 1, 1990
A comparative study of rejoining of DNA double-strand breaks in yeast irradiated with 3.5 MeV alpha-particles or with 30 MeV electronsM Frankenberg-Schwager, D Frankenberg, R Harbich, et al.
International Journal of Radiation Biology and Related Studies in Physics, Chemistry, and Medicine|September 1, 1979
The influence of oxygen on the survival and yield of DNA double-strand breaks in irradiated yeast cellsM Frankenberg-Schwager, D Frankenberg, D Blöcher, et al.
Radiation Protection Dosimetry|December 6, 2006
Neoplastic transformation of a human hybrid cell line by alpha particles in relation to mammography X raysM Frankenberg-Schwager, S Spieren, E Pralle, et al.
International Journal of Radiation Biology|March 1, 1990
Fast kinetics of the oxygen effect for DNA double-strand breakage and cell killing in irradiated yeastD Frankenberg, B D Michael, M Frankenberg-Schwager, et al.
International Journal of Radiation Biology|December 1, 1995
0.3 keV carbon K ultrasoft X-rays are four times more effective than gamma-rays when inducing oncogenic cell transformation at low dosesD Frankenberg, H Kühn, M Frankenberg-Schwager, et al.
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