Saigo Orie | Department Of Molecular Pharmacology Kitasato University School Of Pharmaceutical Sciences
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概要
- Saigo Orieの詳細を見る
- 同名の論文著者
- Department Of Molecular Pharmacology Kitasato University School Of Pharmaceutical Sciencesの論文著者
関連著者
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Saigo Orie
Department of Molecular Pharmacology, Kitasato University School of Pharmaceutical Sciences, Japan
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Mori Asami
Department Of Pediatrics Shiga University Medical Science
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Nakahara Tsutomu
Department Of Developmental Physiology Institute For Comprehensive Medical Sciences Fujita-gakuen Un
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Ishii Kunio
Department Of Molecular Pharmacology Kitasato University School Of Pharmaceutical Sciences
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Saigo Orie
Department Of Molecular Pharmacology Kitasato University School Of Pharmaceutical Sciences
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Mori Asami
Department of Molecular Pharmacology, Kitasato University School of Pharmaceutical Sciences
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Sakamoto K
National Inst. Materials Sci. Ibaraki Jpn
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MORI ASAMI
Department of Pediatrics, Shiga University Medical Science
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Nakahara Tsutomu
Department of Molecular Pharmacology, School of Pharmaceutical Sciences, Kitasato University
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Ishii Kunio
Department of Molecular Pharmacology, School of Pharmaceutical Sciences, Kitasato University
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Sakamoto Kenji
Research Institute Of Marine Bioresources Fukuyama University
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Ishii Kunio
Dep. Of Molecular Pharmacology School Of Pharmaceutical Sciences Kitasato Univ.
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Nakahara Tsutomu
Dep. Of Molecular Pharmacology School Of Pharmaceutical Sciences Kitasato Univ.
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Sakamoto Kenji
Department Of Advanced Material Science Faculty Of Engineering Kagawa University
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Mori Asami
Dep. Of Molecular Pharmacology School Of Pharmaceutical Sciences Kitasato Univ.
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Sakamoto Kenji
Department Of Cardiovascular Medicine Graduate School Of Medical Sciences Kumamoto University
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Sakamoto K
Laboratory Of Pharmacology And Toxicology Graduate School Of Pharmaceutical Sciences The University
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Sakamoto Kenji
Laboratory Of Pharmacology And Toxicology Graduate School Of Pharmaceutical Sciences The University
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Mori Asami
Department of Molecular Pharmacology, Kitasato University School of Pharmaceutical Sciences, Japan
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UCHIDA Seiichi
Department of Biological Research, Division 2, Odawara Research Center, Nippon Soda, Co., Ltd.
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Saito Maki
Departments Of Pharmacology Kitasato University School Of Medicine
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Saito Maki
Department Of Molecular And Cellular Pharmacology School Of Pharmaceutical Sciences Iwate Medical Un
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UEO Mayumi
Department of Molecular Pharmacology, School of Pharmaceutical Sciences, Kitasato University
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KAMETAKA Sokichi
Department of Molecular Pharmacology, School of Pharmaceutical Sciences, Kitasato University
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HOSAKA Hideo
Department of Biological Research, Division 2, Odawara Research Center, Nippon Soda Co., Ltd.
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Ueo Mayumi
Department Of Molecular Pharmacology Kitasato University School Of Pharmaceutical Sciences
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Hosaka Hideo
Department Of Biological Research Division 2 Odawara Research Center Nippon Soda Co. Ltd.
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Uchida Seiichi
Department Of Biological Research Division 2 Odawara Research Center Nippon Soda Co. Ltd.
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HANADA Masayuki
Department of Molecular Pharmacology, Kitasato University School of Pharmaceutical Sciences
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Hanada Masayuki
Department Of Molecular Pharmacology Kitasato University School Of Pharmaceutical Sciences
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Sano Misako
Department Of Molecular Pharmacology Kitasato University School Of Pharmaceutical Sciences
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Kametaka Sokichi
Department Of Molecular Pharmacology Kitasato University School Of Pharmaceutical Sciences
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Sakamoto Kenji
Department of Molecular Pharmacology, Kitasato University School of Pharmaceutical Sciences, Japan
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Nakahara Tsutomu
Department of Molecular Pharmacology, Kitasato University School of Pharmaceutical Sciences, Japan
著作論文
- Hyperglycemia Accelerates Impairment of Vasodilator Responses to Acetylcholine of Retinal Blood Vessels in Rats
- Hyperglycemia Impairs Acetylcholine-Induced Vasodilation of Retinal Arterioles Through Polyol Pathway–Independent Mechanisms in Rats
- Attenuation of Cataract Progression by A-3922, a Dihydrobenzofuran Derivative, in Streptozotocin-Induced Diabetic Rats(Pharmacology)
- Hyperglycemia Impairs Acetylcholine-Induced Vasodilation of Retinal Arterioles Through Polyol Pathway-Independent Mechanisms in Rats