Honda H | Department Of Pharmacology Tokyo University Of Pharmacy And Life Science
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概要
関連著者
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Honda H
Department Of Pharmacology Tokyo University Of Pharmacy And Life Science
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Honda Hideo
Department Of Pharmacology Tokyo University Of Pharmacy And Life Science
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Honda Hideo
Department Of Ophthalmology Nagoya City University Medical School
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KOGO Hiroshi
Department of Pharmacology, Tokyo University of Pharmacy and Life Science
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Kogo Hiroshi
Department Of Anatomy And Cell Biology Gunma University School Of Medicine
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Honda Hideo
東京薬科大学 薬理
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Yamaguchi Kiyoshi
Department of Geriatric Medicine, Graduate School of Medicine, University of Tokyo
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Kogo H
Department Of Pharmacology Tokyo College Of Pharmacy
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Kogo Hiroshi
東京薬科大学 内分泌分子薬理学
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Kogo Hiroshi
Department Of Electrical Engineering Chiba University
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Kogo H
Deparfment Of Anatomy And Molecular Cell Biology Nagoya University Graduate School Of Medicine
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Yamaguchi Kiyoshi
Department Of Pharmacology Tokyo University Of Pharmacy And Life Science
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Yamaguchi Kiyoshi
Department Of Geriatric Medicine Graduate School Of Medicine University Of Tokyo
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Yamaguchi Kiyoshi
Department Of Electronic Engineering Osaka Institute Of Technology
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Kogo H
Tokyo Univ. Pharmacy & Life Sci. Tokyo Jpn
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Mimaki Yoshihiro
Laboratory Of Medical Plant Science Tokyo University Of Pharmacy And Life Science
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Tohei Atsushi
Department Of Pharmacology Tokyo University Of Pharmacy And Life Science
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Sashida Yutaka
Laboratory Of Medical Plant Science Tokyo University Of Pharmacy And Life Science
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WAKISAKA Chiaki
Department of Pharmacology, Tokyo University of Pharmacy and Life Science
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Wakisaka Chiaki
Department Of Pharmacology Tokyo University Of Pharmacy And Life Science
著作論文
- Effects of Phytoestrogens on Acetylcholine- and Isoprenaline-Induced Vasodilation in Rat Aorta
- 17β-Estradiol Alters Isoproterenol-Induced Relaxation in Rat Aortic Rings
- Influence of OSW-1 [3β, 16β, 17α-Trihydroxycholest-5-en-22-one 16-O-(2-O-4-methoxybenzoyl-β-D-xylopyranosyl)-(1→3)-(2-O-acetyl-α-L-arabinopyranoside)], a Steroidal Saponin, on Endothelium Dependent Relaxation Caused by Acetylcholine in Rat Aorta