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Mutation Research|January 1, 1994
Radiation-induced mitotic gene conversion frequency in yeast is modulated by the conditions allowing DNA double-strand break repairM Frankenberg-Schwager, D Frankenberg, R HarbichThe British Journal of Cancer. Supplement|January 1, 1984
Interpretation of the shape of survival curves in terms of induction and repair/misrepair of DNA double-strand breaksD Frankenberg, M Frankenberg-Schwager, R HarbichInternational Journal of Radiation Biology|November 1, 1993
Mechanisms of oxygen radiosensitization in irradiated yeast. I. DNA double-strand breakageD Frankenberg, M Frankenberg-Schwager, R HarbichRadiation Research|March 13, 1998
Computer-aided stochastic modeling of the radiolysis of liquid waterV Michalik, M Begusová, E A BigildeevJournal of Biomolecular Structure & Dynamics|December 1, 1995
Calculation of hydroxyl radical attack on different forms of DNAV Michalik, M Spotheim Maurizot, M CharlierHealth Physics|October 1, 1992
Theoretical estimation of quality factor for tritiumE A Bigildeev, V Michalik, L WilhelmováInternational Journal of Radiation Biology|October 1, 1995
Different repair kinetics for short and long DNA double-strand gaps in Saccharomyces cervisiaeA V Glasunov, M Frankenberg-Schwager, D FrankenbergInternational Journal of Radiation Biology|February 1, 1992
2-deoxy-D-glucose inhibits rejoining of radiation-induced DNA double-strand breaks in yeastM Frankenberg-Schwager, R Harbich, D Frankenberg, et al.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.International Journal of Radiation Biology|March 1, 1995
Molecular mechanism of potentially lethal damage repair. I. Enhanced fidelity of DNA double-strand break rejoining under conditions allowing potentially lethal damage repairM Frankenberg-Schwager, B Jha, K Bär, et al.Pageof 6