辰己 淳 | Institute Of Pharmaceutical Sciences Hiroshima University School Of Medicine
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概要
関連著者
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辰己 淳
Institute Of Pharmaceutical Sciences Hiroshima University School Of Medicine
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北村 繁幸
広島大学 総合薬
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辰己 淳
Faculty Of Pharmaceutical Sciences Kyushu University
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北村 繁幸
Institute of Pharmaceutical Sciences, Hiroshima University School of Medicine
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山田 浩
Institute of Pharmaceutical Sciences, Hiroshima University, School of Medicine
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山田 浩
Institute Of Pharmaceutical Sciences Hiroshima University School Of Medicine
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北村 繁幸
Institute Of Pharmaceutical Sciences Hiroshima University School Of Medicine
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塚元 久雄
Institute of Pharmaceutical Sciences, Faculty of Medicine, Kyushu University
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吉原 新一
Institute Of Pharmaceutical Sciences Hiroshima University School Of Medicine
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鶴田 暁
Kitakyushu Kogai-gijutsu Center
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吉村 英敏
Faculty of Pharmaceutical Sciences, Kyushu University
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尾川 博昭
九州工業大学工学部
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加藤 安彦
九州工業大学
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加藤 安彦
Department of Environmental Sciences, Kyushu Institute of Technology
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尾川 博昭
The Kitakyushu Municipal Institute for Environmental Health Sciences
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只隈 邦彦
Department of Environmental Sciences, Kyushu Institute of Technology
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柿本 幸司
Department of Environmental Sciences, Kyushu Institute of Technology
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只隈 邦彦
Department Of Environmental Sciences Kyushu Institute Of Technology
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塚元 久雄
Faculty Of Pharmaceutical Sciences Kyushu University
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塚元 久雄
Institute Of Pharmaceutical Sciences Faculty Of Medicine Kyushu University
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柿本 幸司
九州工大 工
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吉村 英敏
Faculty Of Pharmaceutical Sciences Kyushu University
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北村 繁幸
Faculty of Pharmaceutical Sciences, Kyushu University
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吉村 英敏
Institute of Pharmaceutical Sciences, Medical Faculty, Kyushu University
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加藤 安彦
九工大・工・物質工学
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吉原 新一
広島大学 総合薬
著作論文
- Mutagenic Activity, Antibacterial Activity and Enzymatic Reducibility of Geometrical Isomers of Nitrofurans in Salmonella typhimurium TA100
- Metabolism of 4-Aminobiphenyl and 4-Acetylaminobiphenyl in Perfused Guinea Pig Liver
- INVOLVEMENT OF LIVER ALDEHYDE OXIDASE IN SULFOXIDE REDUCTION
- REDUCTION OF N-NITROSODIPHENYLAMINE TO THE CORRESPONDING HYDRAZINE BY GUINEA PIG LIVER PREPARATIONS
- Binding of Nitrofuran Derivatives to Nucleic Acids and Protein
- Metabolism of Drugs. XXXV. Metabolic Fate of Meprobamate. (3). A New Metabolic Pathway of Carbamate Group : The Formation of Meprobamate N-Glucuronide in Animal Body.