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Kameya, Hiromi*; Kikuchi, Masahiro; Todoriki, Setsuko*; Furuta, Masakazu*; Kobayashi, Yasuhiko; Hara, Hideyuki*; Shimoyama, Yuhei; Ukai, Mitsuko*
Shokuhin Shosha, 47(1), p.6 - 10, 2012/09
no abstracts in English
Kameya, Hiromi*; Kikuchi, Masahiro; Hara, Hideyuki*; Furuta, Masakazu*; Todoriki, Setsuko*; Kobayashi, Yasuhiko; Ukai, Mitsuko*; Shimoyama, Yuhei
Applied Magnetic Resonance, 42(2), p.153 - 159, 2012/03
Times Cited Count:5 Percentile:30.53(Physics, Atomic, Molecular & Chemical)no abstracts in English
Kume, Tamikazu*; Furuta, Masakazu*; Todoriki, Setsuko*; Uenoyama, Naoki*; Kobayashi, Yasuhiko
Radiation Physics and Chemistry, 78(3), p.222 - 226, 2009/03
Times Cited Count:132 Percentile:99.40(Chemistry, Physical)Kume, Tamikazu*; Furuta, Masakazu*; Todoriki, Setsuko*; Uenoyama, Naoki*; Kobayashi, Yasuhiko
Radioisotopes, 58(1), p.25 - 35, 2009/01
Hayashi, Hirotaka; Narumi, Issei; Wada, Seiichi; Kikuchi, Masahiro; Furuta, Masakazu*; Uehara, Kaku*; Watanabe, Hiroshi*
Journal of Plant Physiology, 161(10), p.1101 - 1106, 2004/10
Times Cited Count:10 Percentile:23.05(Plant Sciences)The resistance of strains Z (wild type) and SM-ZK (chloroplast-deficient mutant) to ionizing radiation was investigated. The colony forming ability of strain Z was higher than that of strain SM-ZK after -irradiation. For both strains, the resistance of light-grown cells was higher than that of dark-grown cells, suggesting that the light conditions during the culture contribute to the radiation resistance of . The comet assay showed that the ability of rejoining DNA double-strand breaks (dsb) was much higher in the light-grown cells. These results suggest that possesses a light-induced repair system to cope with DNA dsb.
Hayashi, Hirotaka*; Wada, Seiichi; Funayama, Tomoo; Narumi, Issei; Kobayashi, Yasuhiko; Watanabe, Hiroshi*; Furuta, Masakazu*; Uehara, Kaku*
Journal of Eukaryotic Microbiology, 51(3), p.321 - 324, 2004/06
Times Cited Count:5 Percentile:6.58(Microbiology)no abstracts in English