大塚 昭信 | Faculty Of Pharmacy Meijo University
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概要
関連著者
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大塚 昭信
Faculty Of Pharmacy Meijo University
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大塚 昭信
Faculty of Pharmacy, Meijo University
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砂田 久一
Faculty Of Pharmacy Meijo University
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檀上 和美
Faculty Of Pharmacy Meijo University
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檀上 和美
Faculty of Pharmacy, Meijo University
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壇上 和美
名城大学薬学部製剤学研究室
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Danjo K
名城大学 薬学部
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壇上 和美
名城大学薬学部製剤学教室
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大塚 昭信
名城大学
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米澤 頼信
名城大学薬学部
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米澤 頼信
Faculty of Pharmacy, Meijo University
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米沢 頼信
Faculty Of Pharmacy Meijo University
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飯田 耕太郎
名城大学薬学部
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檀上 和美
名城大学薬学部
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飯田 耕太郎
Faculty of Pharmacy, Meijo University
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Iida K
Faculty Of Pharmacy Meijo University
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Iida Kotaro
Faculty Of Pharmacy Meijo University
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飯田 耕太郎
Faculty Of Pharmacy Meijo University
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篠原 格
Faculty of Pharmacy, Meijo University
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篠原 格
Faculty Of Pharmacy Meijo University
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川島 嘉明
Gifu Pharmaceutical University
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堀沢 栄次郎
マルホ株式会社京都r&dセンター創剤技術研究所
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堀沢 栄次郎
Hikone Research Laboratories, Maruho Co., Ltd.,
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小村 昭夫
Hikone Research Laboratories, Maruho Co., Ltd.,
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小村 昭夫
マルホ(株)研究部
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壇上 和美
Faculty of Pharmacy, Meijo University
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Danjo K
Fac. Of Pharmacy Meijo Univ.
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堀沢 栄次郎
Hikone Research Laboratories Maruho Co. Ltd.
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竹中 英雄
Gifu College of Pharmacy
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宮川 康彦
Faculty of Pharmacy, Meijo University
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北村 幸夫
Faculty of Pharmacy, Meijo University
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宮川 康彦
Faculty Of Pharmacy Meijo University:(current Address)department Of Pharmaceutical Technology Centra
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脇本 彪
Toa Pharmaceutical Industrial Co. Ltd.
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平井 淑子
Faculty of Pharmaceutical Sciences, Kyoto University
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加藤 博信
Pharmacy Laboratories R & D Division Nippon Shinyaku Co. Ltd.
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小村 昭夫
Hikone Research Laboratories Maruho Co. Ltd.
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白倉 健史
Faculty Of Pharmacy Meijo University
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平井 淑子
Faculty Of Pharmaceutical Sciences Kyoto University:(present Address)faculty Of Phamacy Meijo Univer
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平井 淑子
Faculty Of Pharmacy Meijo University
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北村 幸夫
Faculty Of Pharmacy Meijo University:(current Address)hikone Resaerch Laboratories Maruho Co. Ltd.
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佐々木 緑
Faculty Of Pharmacy Meijo University
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田中 靖子
名城大学薬学部
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杉浦 道治
Faculty of Pharmacy, Meijo University
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濱田 喜樹
Faculty of Pharmacy, Meijo University
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古川 圭子
Faculty Of Pharmacy Meijo University Yagoto-urayama
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半田 哲郎
Faculty Of Pharmacy Kyoto University
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丹羽 孝司
岐阜薬科大学附属薬局
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丹羽 孝司
岐阜薬科大学製剤学教室
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瀬古 則貴
Faculty Of Pharmacy Meijo University
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小村 和夫
Hikone Research Laboratories, Maruho Co., Ltd.,
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半田 哲郎
Gifu Pharmaceutical University
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竹内 洋文
Gifu Pharmaceutical University
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丹羽 孝司
Pharmacy Department, Gifu City Hospital
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加藤 博信
Pharmacy Laboratories R & D Division, Nippon Shinyaku Co., Ltd.,
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牛丸 紘一
Pharmacy Laboratories R & D Division, Nippon Shinyaku Co., Ltd.,
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原 克巳
Faculty Of Pharmacy Meijo University
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長谷川 正樹
Research Center Toyo Jozo
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高橋 由美子
Faculty Of Pharmacy Meijo University
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石野 隆三
Pharmaceutics Research Laboratory, Tanabe Seiyaku Co., Ltd.,
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濱田 喜樹
名城大学薬学部
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伊庭 克英
Chemical Research and Development Division, General Laboratories, Arakawa-Chotaro & Co.
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小川 秀一
Chemical Research and Development Division, General Laboratories, Arakawa-Chotaro & Co.
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荒川 永太郎
Chemical Research and Development Division, General Laboratories, Arakawa-Chotaro & Co.
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増山 哲子
Faculty of Pharmacy, Meijo University
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西尾 文秀
Faculty of Pharmacy, Meijo University
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畢 殿洲
Pharmaceutical College of Shenyang
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樋口 文男
Faculty of Pharmacy, Meijo University
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関崎 春雄
Faculty of Pharmaceutical Sciences, Health Science University
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江口 浩司
(Present address)Eisai Co., Ltd.
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小崎 耕自
Faculty of Pharmacy, Maijo University
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加藤 博信
Faculty of Pharmacy, Meijo University
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神谷 賢司
Faculty of Pharmacy, Meijo University
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松井 登
Honso Pharm. Co., Ltd.,
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石野 隆三
Faculty of Pharmacy, Meijo University, Yagoto-Urayama
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松井 登
Honso Pharm. Co. Ltd.
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木下 和俊
Faculty Of Pharmacy Meijo University
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小川 秀一
Research And Development Division General Laboratory Arakawa Chotaro & Co.
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Sasaki M
Faculty Of Pharmaceutical Sciences University Of Tokushima
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伊藤 充
Faculty Of Pharmacy Meijo University
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Eguchi H
Faculty Of Pharmacy Meijo University
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江口 浩司
(present Address)eisai Co. Ltd.
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関崎 春雄
Faculty Of Pharmaceutical Sciences Health Sciences University Of Hokkaido
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Sekizaki Haruo
Faculty Of Pharmaceutical Sciences Health Science University Of Hokkaido
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小崎 耕自
Faculty Of Pharmacy Maijo University
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山本 昭夫
Faculty Of Pharmacy Meijo University
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栗本 高志
Faculty of Pharmacy, Meijo University
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山田 誉春
Faculty of Pharmacy, Meijo University
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川島 嘉明
Gigu Pharmaceutical Univarsity
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杉浦 道治
Faculty Of Pharmacy Meijo University
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北河 和隆
Faculty of Pharmacy, Meijo University
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佐藤 嗣夫
Research Center, Toyo Jozo
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住田 行男
Research Center, Toyo Jozo
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竹田 明美
Toa Pharmaceutical Ind., Co., Ltd.
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山田 誉春
Central Research Laboratories Zeria Pharmaceutical Co. Ltd.
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Yamada Yoshiharu
Central Research Laboratories Zeria Pharmaceutical Co. Ltd.
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北河 和隆
Faculty Of Pharmacy Meijo University
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栗本 高志
Faculty Of Pharmacy Meijo University
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神谷 明良
Pfizer Pharmaceuticals Inc. Nagoya Plant
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樋口 文男
Faculty Of Pharmacy Meijo University
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増山 哲子
Faculty Of Pharmacy Meijo University
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伊庭 克英
Chemical Research And Development Division General Laboratories Arakawa-chotaro & Co.
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荒川 永太郎
Research And Development Division General Laboratory Arakawa Chotaro & Co.
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池田 栄司
Pfizer Pharmaceuticals Inc. Nagoya Plant
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神谷 賢司
Faculty Of Pharmacy Meijo University
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住田 行男
Research Center Toyo Jozo
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鳥居 佐紀子
Faculty of Pharmacy, Meijo University
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芥子川 武利
Gifu College of Pharmacy
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田中 靖子
Faculty of Pharmacy, Meijo University
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石野 隆三
Pharmaceutics Research Laboratory Tanabe Seiyaku Co. Ltd.
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鳥居 佐紀子
Faculty Of Pharmacy Meijo University
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佐藤 嗣夫
Research Center Toyo Jozo
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牛丸 紘一
Pharmacy Laboratories R & D Division Nippon Shinyaku Co. Ltd.
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西尾 文秀
Faculty Of Pharmacy Meijo University
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佐々木 緑
Faculty of Pharmaceutical Sciences, University of Tokushima
著作論文
- Effect of Granule Strength on Compressed Tablet Strength
- Effect of Binder Characteristics on the Strength of Agglomerates Prepared by the Wet Method II
- Effect of Binder Characteristics on the Strength of Agglomerates Prepared by the Wet Method
- Computer Simulation of Agglomeration by a Two-Dimensional Random Addition Model. IV. : Agglomeration Kinetics and Micromeritic Properties of Agglomerate of Binary Mixtures of Adhesive Circles
- Fundamental Study on the Evaluatoin of Strength of Granular Particles
- Influence of Moisture Adsorption of Volume Shrinkage and Diametral Tensile Strength of Sucrose Tablets
- Release of Sodium Guaiazurene-3-sulfonate from Polymer Film Dosage Forms
- Release of Isosorbide Dinitrate from Polymer Film Dosage Forms and Absorption of This Drug through the Oral Mucosa of Rats
- Hydrolysis of Acetylsalicylsalicylic Acid and Salicylsalicylic Acid in Aqueous Solution
- Interactions between Water and Pharmaceutical Polymers Determined by Water-Vapor Sorption Measurement and Differential Scanning Calorimetry
- Release of Lidocaine from Polymer Film Dosage Forms
- Measurement of Adhesive Force between Particles of Organic Substances and Polymer Substrates by the Centrifugal Separation Method : Effect of Electrostatic Charge
- Solid-State Interaction of Ibuprofen with Polyvinylpyrrolidone
- Influence of the Molecular Weight of Binding Agents on the Physical Properties of Granules and Tablets
- Dissolution of Solid Dosage Form. IV. Equation for the Non-sink Dissolution of a Monodisperse System
- Measurement of the Adhesive Force between Particles and a Substrate by Means of the Impact Separation Method. Effect of the Surface Roughness and Type of Material of the Substrate
- Effect of Temperature on the Sticking of Low Melting Point Materials
- Pharmaceutical Preparations of Crude Drug Powder. III.The Effects of the Physical Properties of the Binder Solution on the Characteristics of the Granule from the Mixed Powders
- Adsorption of Amino-acetamide Derivatives from 1-Octanol Solution by Silica Gel
- Dissolution and Simulation Curved for Log-Normal Particle-Size-Distributed Model Systems
- Changes of Surface Area in the Dissolution Process of Crystalline Substances. V. : Dissolution and Simulation Curves for Log-Normal Particle-Size-Distributed Model Systems
- Changes of Surface Area in the Dissolution Process of Crystalline Substances. IV. Dissolution and Simulation Curves Estimated from Changes of Surface Area and Cube Root Law
- Changes of Surface Area in the Dissolution Process of Crystalline Substances. III. : Dissolution and Simulation Curves for Symmetrical Particle-Size-Distributed Model Systems
- Changes of Surface Area in the Dissolution Process of Crystalline Substances. II. : Dissolution and Simulation Curves for Mixed Systems of Sieved Particles
- Influence of Granulating Fluid Properties on Physical Properties of Kneading Mass and Granules
- Flocculation Studies of Granulated Stearyl Alcohol on the Surface of Aqueous Media. III. : Changes of Agglomerate Structure in a Two-Dimensional System with Anionic Surface-Acitive Agent
- Flocculation Kinetics of the Didisperse System-Computer Simulation of Flocculation by the Random Coalescence Model
- Measurement of Adhesive Force between Particles and Polymer Films
- Effect of Particle Shape on the Compaction and Flow Properties of Powders
- Measurement of the Adhesive Force between Particles of Powdered Materials and a Glass Substrate by Means of the Impact Separation Method. III. : Effect of Particle Shape and Surface Asperity
- Measurements of the Adhesive Force between Particles of Powdered Organic Substances and a Glass Substrate by Means of the Impact Separation Method. II. Effect of Addition of Light Anhydrous Silicic Acid on the Adhesive Force of Potato Starch
- Dissolution of Solid Dosage Form. III. Equations for the Dissolution of a Nondisintegrating Single Component Tablet under a Nonsink Condition
- Dissolution of Solid Dosage Form. II. Equations for the Dissolution of Nondisintegrating Tablet under the Sink Condition
- Evaluation of the Strength of a Scored Oblong Tablet
- Influence of Granulating Fluids in Hydroxypropycellulose Binder Solution on Physical Properties of Lactose Granules
- Flocculation Studies of Granulated Stearyl Alcohol on the Surface of Aqueous Media. II. : Flocculation-Deflocculation Mechanism in a Two-Dimensional System
- Changes of Surface Area in the Dissolution Process of Crystalline Substances
- Moisture Sorption and Volume Expansion of Amorphous Lactose Tablets
- Measurements of the Adhesive Force between Particles of Powdered Organic Substances and a Glass Substrate by Means of the Impact Separation Method. I. Effect of Temperature
- Computer Simulation of Agglomeration by a Two-dimensional Random Addition Model. III. -Agglomeration Kinetics and Micromeritic Properties of Closely-packed Agglomerates of Heterogeneous Binary Circles-
- Simulation of Agglomeration. II. Two-dimensional Random Addition Model. (1)
- Studies on Compaction of Powders. III. Compression Behavior of Several Powders under Low Pressure
- The Effect of Humidity on the Compaction Behavior and the Adhesion Force for Surface-modified Quartz Powders