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中華人民共和国 | 論文
- Pharmacokinetic Interaction of Paeoniflorin and Sinomenine : Pharmacokinetic Parameters and Tissue Distribution Characteristics in Rats and Protein Binding Ability In Vitro
- サンドブラスト処理したチタンおよび金銀パラジウム合金の観察(チタン, 創立55周年記念大会平成17年春期 (東京) 第45回日本歯科理工学会学術講演会)
- Characterization of CTX-M-22 and TEM-141 encoded by a single plasmid from a clinical isolate of Enterobacter cloacae in China
- Development of Natural Crude Drug Resources from Taiwan-5-Pharmacognostical Studies on Chinese Crude Drug"Peh-hue-juwa-chi-chhau"(白花蛇舌草)-1-
- Development of Natural Crude Drug Resources from Taiwan-4-Pharmacognostical Studies on the Chinese Crude Drug"Han-lian-cao"(旱蓮草)-2-
- Effects of Third Ventricle Injention of Norepinephrine Analogue on LH Secretion of the Non-Laying SIJI Goose
- Control Release Effects of Binders Used in Pills of Traditional Chinese Medicine Herbs
- 上海医療事情 (特集 最新中国医療事情)
- Saponins from Chinese Cucurbitaneous Plants : Solubilization of Saikosaponin-a with Hemslosides Ma2 and Ma3 and Structure of Hemsloside H_1 from Hemsleya chinensis
- Effects of Icariin on Hypothalamic-Pituitary-Adrenal Axis Action and Cytokine Levels in Stressed Sprague-Dawley Rats(Pharmacology)
- Ethanolic Extracts from Curcuma longa Attenuates Behavioral, Immune, and Neuroendocrine Alterations in a Rat Chronic Mild Stress Model(Pharmacology)
- Association of Human Leukocyte Antigen Polymorphism with Hepatitis B Virus Infection and Genotypes
- YMDD Mutations and Genotypes of Hepatitis B Virus in Northern China
- 市民に向かう最近の理不尽な暴力をめぐって (特集 一般市民に向かうバイオレンス)
- 慈恵医大精神科卒後研修は今 (特集 精神科卒後研修は今)
- 精神科病院の構造改革は不可能か (特集 これからの精神科病院のあり方)
- The relationship between neurokinin-1 receptor and substance P in the medullary dorsal horn A light and electron microscopic immunohistochemical study in the rat
- Examination of the Mechanism of Oleic Acid-Induced Percutaneous Penetration Enhancement : an Ultrastructural Study(Biopharmacy)
- Blocking the glial function suppresses subcutaneous formalin-induced nociceptive behavior in the rat
- The lumbar spinal cord glial cells actively modulate subcutaneous formalin induced hyperalgesia in the rat