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D G Stetka

Showing results (1-10 of 15) with videos related to

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Human Genetics|May 23, 1979
Further analysis of the replication bypass model for sister chromatid exchangeD G Stetka
Mutation Research|December 1, 1976
Sister chromatid exchange as an assay for genetic damage induced by mutagen-carcinogens. I. In vivo test for compounds requiring metabolic activationD G Stetka, S Wolff
Mutation Research|December 1, 1976
Sister chromatid exchange as an assay for genetic damage induced by mutagen-carcinogens. II. In vitro test for compounds requiring metabolic activationD G Stetka, S Wolff
American Journal of Medical Genetics|May 1, 1990
Trisomy 22 in a liveborn infant with multiple congenital anomaliesE McPherson, D G Stetka
Mutation Research|May 1, 1984
SCEs are induced by replication of BrdU-substituted DNA templates, but not by incorporation of BrdU into nascent DNAD G Stetka, M C Spahn
Chromosoma|August 18, 1977
The interaction of Hoechst 33258 and BrdU substituted DNA in the formation of sister chromatid exchangesD G Stetka, A V Carrano
International Journal of Radiation Biology and Related Studies in Physics, Chemistry, and Medicine|April 1, 1977
Recovery of Pisum root meristems after mitotic-inhibitory treatments with 3H-thymidine. Inhibition of cell-cycle progression by unincorporated 3H-thymidineD G Stetka, P L Webster
Mutation Research|September 1, 1978
Induction of long-lived chromosome damage, as manifested by sister-chromatid exchange, in lymphocytes of animals exposed to mitomycin-CD G Stetka, J Minkler, A V Carrano
Environmental Mutagenesis|January 1, 1985
SCE induction is uncoupled from mutation induction in mammalian cells following exposure to ethylnitrosourea (ENU)D G Stetka, W T Bleicher, J G Brewen
Basic Life Sciences|January 1, 1984
Statistical design, analysis, and inference issues in studies using sister chromatid exchangeE B Whorton, R R Tice, D G Stetka
Pageof 2

Showing results (1-10 of 15) with videos related to

Sort By:
Pageof 2
Human Genetics|May 23, 1979
Further analysis of the replication bypass model for sister chromatid exchangeD G Stetka
Mutation Research|December 1, 1976
Sister chromatid exchange as an assay for genetic damage induced by mutagen-carcinogens. I. In vivo test for compounds requiring metabolic activationD G Stetka, S Wolff
Mutation Research|December 1, 1976
Sister chromatid exchange as an assay for genetic damage induced by mutagen-carcinogens. II. In vitro test for compounds requiring metabolic activationD G Stetka, S Wolff
American Journal of Medical Genetics|May 1, 1990
Trisomy 22 in a liveborn infant with multiple congenital anomaliesE McPherson, D G Stetka
Mutation Research|May 1, 1984
SCEs are induced by replication of BrdU-substituted DNA templates, but not by incorporation of BrdU into nascent DNAD G Stetka, M C Spahn
Chromosoma|August 18, 1977
The interaction of Hoechst 33258 and BrdU substituted DNA in the formation of sister chromatid exchangesD G Stetka, A V Carrano
International Journal of Radiation Biology and Related Studies in Physics, Chemistry, and Medicine|April 1, 1977
Recovery of Pisum root meristems after mitotic-inhibitory treatments with 3H-thymidine. Inhibition of cell-cycle progression by unincorporated 3H-thymidineD G Stetka, P L Webster
Mutation Research|September 1, 1978
Induction of long-lived chromosome damage, as manifested by sister-chromatid exchange, in lymphocytes of animals exposed to mitomycin-CD G Stetka, J Minkler, A V Carrano
Environmental Mutagenesis|January 1, 1985
SCE induction is uncoupled from mutation induction in mammalian cells following exposure to ethylnitrosourea (ENU)D G Stetka, W T Bleicher, J G Brewen
Basic Life Sciences|January 1, 1984
Statistical design, analysis, and inference issues in studies using sister chromatid exchangeE B Whorton, R R Tice, D G Stetka
Pageof 2