石田 尚行 | 電気通信大量子物質工
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概要
関連著者
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石田 尚行
電気通信大量子物質工
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石田 尚之
電通大電気通信学部
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ISHIDA Toshimasa
Osaka University of Pharmaceutical Sciences
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野上 隆
Department Of Applied Physics And Chemistry The University Of Electro-communications
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石田 尚之
電通大量子物質工
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MINOURA Katsuhiko
Osaka University of Pharmaceutical Sciences
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Nogami Takashi
Department Of Applied Physics And Chemistry The University Of Electro-communications
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NOGAMI Takashi
Department of Applied Physics and Chemistry, The University of Electro-Communications
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ISHIDA Takayuki
Department of Applied Physics and Chemistry, The University of Electro-Communications
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IN Yasuko
Osaka University of Pharmaceutical Sciences
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In Y
Osaka Univ. Pharmaceutical Sci. Osaka Jpn
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ISHIDA Toshimasa
Department of Pyysical Chemistry, Osaka University of Pharmaceutical Sciences
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In Yasuko
Osaka University Of Pharmaceutical Science
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YASUI Masanori
Department of Applied Physics and Chemistry, The University of Electro-Communications
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IWASAKI Fujiko
Department of Applied Physics and Chemistry, The University of Electro-Communications
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In Yasuko
Department Of Physical Chemistry Osaka University Of Pharmaceutical Sciences
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大平 聖子
理研
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TOMOO Koji
Department of Pyysical Chemistry, Osaka University of Pharmaceutical Sciences
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Ishikawa M
Kanazawa Univ. Kanazawa
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渡邊 功雄
理研仁科セ
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大平 聖子
東大理
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渡邊 功雄
理研
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永峰 謙忠
理研中間子
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TOGASHI Kensuke
Department of Applied Physics and Chemistry, The University of Electro-Communications
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KAMIGAUCHI Miyoko
Kobe Pharmaceutical University
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MINOURA Katsuhiko
Department of Physical Chemistry, Osaka University of Pharmaceutical Sciences
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石田 尚行
電通大電気通信学部
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石田 尚行
電通大電物工
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野上 隆
電通大電物工
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IMACHI Ron
Department of Applied Physics and Chemistry, The University of Electro-Communications
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北村 和則
富山化学工業株式会社綜合研究所
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Imachi R
Department Of Applied Physics And Chemistry The University Of Electro-communications
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Imachi Ron
Department Of Applied Physics And Chemistry The University Of Electro-communications
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YAO Tian-Ming
Department of Chemistry, Tongji University
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KITAMURA Kunihiro
Research Center of Taisho Pharmaceutical Co., Ltd.
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長谷川 浩
金沢大学理工研究域物質化学系
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網代 芳民
京大工物エネ:京大院理
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浅野 貴行
九大院理
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鳴海 康雄
阪大極限セ
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松尾 晶
阪大極限セ
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野上 隆
電通大電気通信学部
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石田 尚行
電通大量子物質工
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Yokoi T
Faculty Of Pharmaceutical Sciences Kobe Gakuin University
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Tsuda Yuko
Faculty Of Pharmaceutical Sciences Kobe Gakuin University:cooperative Research Center Of Life Scienc
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Tsuda Y
Faculty Of Pharmaceutical Sciences Kobe Gakuin University
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ISHIKAWA Masayasu
Institute for Solid State Physics, University of Tokyo
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Tsuda Yuko
Faculty Of Pharmaceutical Science Kobe Gakuin University
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TAKEDA Naoya
Institute for Solid State Physics, University of Tokyo
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Doi Mitsunobu
Osaka University Of Pharmaseutical Sciences
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WAKAHARA Akio
Fujisawa Pharmaceutical Co., Ltd.
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Ishikawa Masayasu
The Institute For Solid State Physics The University Of Tokyo
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野尻 浩之
東北大金研
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吉居 俊輔
東北大CINTS
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竹田 和義
九大工
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河江 達也
九大工
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金道 浩一
阪大極限セ
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吉居 俊輔
Cints
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岡澤 厚
電気通信大量子物質工
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美藤 正樹
九大工
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吉居 俊介
東北大金研
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Nakao H
Photon Factory Institute Of Materials Structure Science Kek
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Nakao Hironori
Department Of Physics Tohoku University
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網代 芳民
九大院理
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野上 隆
電通大
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長谷川 浩
金沢大学 理工研究域 物質化学系
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Yamada T
Department Of Chemistry Faculty Of Science And Engineering Konan University
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Takeuchi Kengo
Osaka Univ. Pharmaceutical Sci. Osaka
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津田 喜典
金沢大学薬学部
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DOI Yoshitaka
Department of Applied Physics and Chemistry, The University of Electro-Communications
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細川 浩平
阪大極限セ
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KUSAKA Takaharu
The University of Electro - Communications
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ISHIDA Takayuki
The University of Electro - Communications
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HASHIZUME Daisuke
The University of Electro - Communications
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IWASAKI Fujiko
The University of Electro - Communications
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NOGAMI Takashi
The University of Electro - Communications
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阿久井 裕三
電通大量子物質工
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野上 隆
電通大量子物質工
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YAMAMOTO Hajime
Department of Applied Physics and Chemistry, The University of Electro-Communications
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永嶺 謙忠
高エネ研究機構中間子施設
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井瀬 智章
電通大量子物質工
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Fujita Yuki
Department of Neuroscience and Neurology, Osaka City University Medical School
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TSUDA Yuko
Faculty of Pharmaceutical Sciences, Kobe Gakuin University
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OKADA Yoshio
Faculty of Pharmaceutical Sciences, Kobe Gakuin University
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Murashima Takashi
Department Of Chemistry Faculty Of Science And Engineering Konan University
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YOSHIDA Mayumi
Department of Chemistry Faculty of Science, Shizuoka University
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DOI Mitsunobu
Osaka University of Pharmaceutical Sciences
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Fujita Yuki
Department Of Physical Chemistry Osaka University Of Pharmaceutical Sciences
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Okada Yoshio
Faculty Of Pharmaceutical Sciences Kobe Gakuin University
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津田 喜典
金沢大
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NISHIJO Jujiro
Kobe Pharmaceutical University
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Shimohigashi Yasuyuki
Laboratory Of Structure-function Biochemistry Department Of Chemistry Faculty Of Sciences Kyushu Uni
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Doi Mitsunobu
Department Of Physical Chemistry Osaka University Of Pharmaceutical Sciences
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SUGIURA Makiko
Kobe Pharmaceutical University
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吉居 俊輔
東北大金研
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萩原 政幸
阪大極限セ
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金道 浩一
東大物性研
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網代 芳民
京大院理
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西山 樟生
東大理中間
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奥西 巧一
新潟大理
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柏木 隆成
筑波大数理物質
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Yamada Takashi
Department of Molecular Biotechnology, Graduate School of Advanced Sciences of Matter, Hiroshima Uni
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永嶺 謙忠
理研
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野尻 浩之
東北大金研:cints
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田中 豪
東北大金研
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奥西 功一
新潟大理
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林 美咲
東北大金研
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Gomella A.
東北大金研
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永嶺 謙忠
東大理
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柏木 隆成
阪大極限セ
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Nakao Hironori
Graduate School Of Science Tohoku University
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MINAKATA Hiroyuki
Suntory Institute for Bioorganic Research
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SHIMOHIGASHI Yasuyuki
Laboratory of Structure-Function Biochemistry, Department of Chemistry, Kyushu University
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SHIMOHIGASHI Yasuyuki
Faculty and Graduate School of Sciences, Kyushu University
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南方 宏之
(財)サントリー生有研
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南方 宏之
Faculty Of Pharmaceutical Sciences Kyoto University
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Minakata Hiroyuki
Suntory Institute Of Bioorganic Research
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吉居 浩輔
東北大金研
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Kawakami Takashi
Department of Regenerative Medicine and Advanced Cardiac Therapeutics, Keio University School of Med
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MIYOSHI Hiroshi
Department of Microbiology, St. Marianna University School of Medicine
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永嶺 謙忠
東大理中間子
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MORISHITA Yasuhiko
Department of Applied Physics and Chemistry, The University of Electro-Communications
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前島 辰也
分子研
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野上 隆
電気通信大学量子・物質工学科
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MIYAKE Takashi
The University of Electro-Communications
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KAN-NARI Eiji
Department of Applied Physics and Chemistry, The University of Electro-Communications
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伊瀬 智章
電通大量子物質工
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片山 知生
電通大量子物質工
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三宅 高史
電通大量子物質工
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永嶺 謙忠
高工研
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阿久井 裕三
電通大電物工
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井瀬 智章
電通大電物工
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永嶺 謙忠
高エネ研機構
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NAKAYAMA Kensuke
Department of Applied Physics and Chemistry, The University of Electro-Communications
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TAKAYAMA Ryo
Department of Applied Physics and Chemistry, The University of Electro-Communications
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HASHIZUME Daisuke
Department of Applied Physics and Chemistry, The University of Electro-Communications
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SUZUKI Motohiro
Department of Applied Physics and Chemistry, The University of Electro-Communications
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MIYAZAKI Anna
Faculty of Pharmaceutical Sciences, Kobe Gakuin University
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YAMADA Takashi
Faculty of Science and Engineering, Konan University
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ISOZAKI Kaname
Faculty and Graduate School of Science, Kyushu University
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AMBO Akihiro
Tohoku Pharmaceutical University
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SASAKI Yusuke
Tohoku Pharmaceutical University
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MIYAZAWA Toshifumi
Department of Chemistry, Faculty of Science and Engineering, Konan University
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MURASHIMA Takashi
Department of Chemistry, Faculty of Science and Engineering, Konan University
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HIRANO Koichiro
Department of Chemistry, Faculty of Science and Engineering, Konan University
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HANYU Masayuki
Department of Chemistry, Faculty of Science and Engineering, Konan University
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HIRAMATSU Makoto
Department of Chemistry, Faculty of Science and Engineering, Konan University
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下東 康幸
Division Of Biology Faculty Of Science Fukuoka University
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Shimohigashi Yasuyuki
九州大学 理学研究院化学部門構造機能生化学
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Shimohigashi Y
Kyushu Univ. Fukuoka Jpn
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Isozaki Kaname
Laboratory Of Structure-function Biochemistry Kyushu University
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Miyazawa T
Department Of Chemistry Faculty Of Science And Engineering Konan University
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Miyazawa Toshifumi
Department Of Chemistry And Functional Molecules Faculty Of Science And Engineering Konan University
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Hanyu M
Department Of Chemistry Faculty Of Science And Engineering Konan University
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Hanyu Masayuki
Department Of Chemistry Faculty Of Engineering Gunma University
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Hanyu Masayuki
Konan Univ. Kobe Jpn
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Isozaki K
Laboratory Of Structure-function Biochemistry Kyushu University
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Lazarus L
Medicinal Chemistry Group Lpc National Institute Of Environmental Health Sciences
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Yuji Miyazaki
Research Center For Molecular Thermodynamics Graduate School Of Science Osaka University
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SORAI Michio
Research Center for Molecular Thermodynamics, Graduate School of Science, Osaka University
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IWASHITA TAKASHI
Suntory Institute for Bioorganic Research(SUNBOR)
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Shimohigashi Yasuyuki
Laboratory Of Biochemistry Department Of Chemistry Faculty Of Science Kyushu University
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野尻 浩幸
東北大 金属材料研
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YAMAMOTO Atsushi
Department of Surgery, Hiroshima Prefectural Akitsu Hospital
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NISHIYAMA Kusuo
Meson Science Laboratory, Institute of Materials Structure Science, High Energy Accelerator Research
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NOSE Takeru
Laboratory of Biochemistry, Department of Chemistry, Faculty of Science, Kyushu University
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大平 聖子
東大理中間子
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Nose Takeru
Laboratory Of Structure-function Biochemistry Department Of Chemistry Faculty Of Sciences Kyushu Uni
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Ambo A
Tohoku Pharmaceutical University
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Miyazaki A
Faculty Of Pharmaceutical Sciences Kobe Gakuin University
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Miyazaki Anna
Faculty Of Pharmaceutical Sciences Kobe Gakuin University
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Sasaki Y
Tohoku Pharmaceutical University
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Nagamine Kanetada
Meson Science Laboratory, Faculty of Science, University of Tokyo
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MORINO Shigenobu
Department of Pyysical Chemistry, Osaka University of Pharmaceutical Sciences
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SHINOZAKI Fumiyoshi
Osaka University of Pharmaseutical Sciences
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YAMAMOTO Daisuke
Osaka Medical College
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HAMADA Yasumasa
Chiba University
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SHIOIRI Takayuki
Nagoya City University
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KAWAMOTO Eiji
Department of Physical Chemistry, Osaka University of Pharmaceutical Sciences
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AMANO Takashi
Department of Physical Chemistry, Osaka University of Pharmaceutical Sciences
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KANAYAMA Jyutoku
Department of Physical Chemistry, Osaka University of Pharmaceutical Sciences
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NOMOTO Kyosuke
Suntory Institute for Bioorganic Research
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NAGATA Hiroomi
Department of Physical Chemistry, Osaka University of Pharmaceutical Sciences
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KATSUYA Yoshio
Hyogo Prefecture Institute of Industrial Research
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MEZAKI Yoshihiro
Hyogo Prefecture Institute of Industrial Research
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SASAKI Masahiro
Hyogo Institute for Aging Brain and Cognitive Disorders
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TERASHIMA Akira
Hyogo Institute for Aging Brain and Cognitive Disorders
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TANIGUCHI Taizo
Hyogo Institute for Aging Brain and Cognitive Disorders
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HASEGAWA Hiroshi
Hyogo Institute for Aging Brain and Cognitive Disorders
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SHIONO Masaaki
Kyusyu University
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MIYAZAKI Yuji
Research Center for Molecular Thermodynamics, Graduate School of Science, Osaka University
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MATSUMOTO Tetuya
Research Center for Molecular Thermodynamics, Graduate School of Science, Osaka University
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KISHIMA Shouitirou
Department of Physical Chemistry, Osaka University of Pharmaceutical Sciences
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Hijikata-Okunomiya Akiko
Faculty of Health Science, Kobe University School of Medicine
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Okamoto Shosuke
Kobe Research Projects on Thrombosis and Haemostasis
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IGARASHI Yasuhiro
Biotechnology Research Center, Toyama Prefectural University
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Noda Yuko
Department Of Physical Chemistry Kobe Pharmaceutical University
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Nishiyama Kusuo
Meson Science Laboratory (ut-msl) Faculty Of Science University Of Tokyo
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Nishiyama Kusuo
Meson Science Laboratory Faculty Of Science The University Of Tokyo
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Shimohigashi Yasuyuki
Laboratory Opf Biochemistry Department Of Chemistry Faculty Of Science Kyushu University
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Shimohigashi Yasuyuki
Laboratory Of Structure-function Biochemistry Department Of Chemistry Faculty And Graduate School Of
著作論文
- 27aQJ-11 RE-3dヘテロ金属分子磁性体の交換相互作用と磁性(量子スピン系(二次元系及びその他),領域3,磁性,磁気共鳴)
- 20aQH-7 RE-3dヘテロ金属分子磁性体の交換相互作用と磁性(20aQH 量子スピン系(クラスター系及び一般),領域3(磁性,磁気共鳴))
- Illumination-induced Magnetization Enhancement of the Weak Ferromagnet [Fe(N_3)_2(pm)] (pm = Pyrimidine)
- 24pPSB-2 S=1/2反強磁性鎖の磁化過程における交替磁場の影響(量子スピン系,化合物磁性,スピングラス・ランダム系,アモルファス系,フラストレーション系,磁気共鳴一般,磁性一般,領域3(磁性,磁気共鳴))
- 27aPS-106 S=1/2一次元反強磁性鎖Cu-pyrimidineの強磁場磁化過程(領域3ポスターセッション : 希土類合金,化合物磁性,薄膜・人工格子,スピングラス,フラストレーション,量子スピン系,実験技術開発等)(領域3)
- 21aTC-8 交替磁場が存在する 1 次元反強磁性鎖 Cu-pyrimidine の強磁場磁化
- 超分子的に制御できる分子磁性
- Low - Temperature Magnets M[N(CN)_2]_2(pyrimidine)(M=Fe and Co) with a 3 - D Network
- One-Dimensional S=1 Ferromagnetic Chain Formed by a Square Ni_2S_2Motif in Ni(qt)_2(qt=Quinoline-8-thiolate)
- The Experimental Deformation Electron-Density Distributions of 4-Arylmethyleneamino-2,2,6,6-tetramethyl-1-piperidyloxyl (TEMPO) Radicals: Relations between Electron Densities and Intermolecular Interactions
- 27aYQ-12 有機磁性体4-Py-CH=N-TEMPOのμSR研究
- 30p-J-6 μSR実験法を用いた有機ラジカル強磁性体Ar-CH=N-TEMPOの磁性研究II
- 30p-J-4 有機強磁性体p-Cl-C_6H_4CH=N-TEMPOにおける圧力誘起強磁性-反強磁性転移
- Ferromagnetic and Antiferromagnetic Phases of 4-(4-Iodobenzylideneamino)-2,2,6,6-tetramethylpiperidin-1-yloxyl
- 28a-YH-5 μSR実験法を用いた有機ラジカル強磁性体Ar-CH=N-TEMPOの磁性研究
- Pyrimidine-Bridged Cobalt(II) Complexes with a Chiral 3-D Network Showing Weak Ferromagnetism
- 1p-Y-13 μSR実験法を用いた有機ラジカル強磁性体Ph-CH=N-TEMPOの磁性研究
- 1p-Y-12 有機強磁性体TEMPOの加圧効果
- 6a-YH-2 μSR実験法を用いた有機ラジカル強磁性体Ar-CH=N-TEMPOの磁性研究
- Ferromagnetic Dimer of π-Conjugated Organic Free Radicals 9, 9-Bis(p-tolyl)-9, 10-dihydroacridin-10-yloxyl
- Comparison of Conformations of Tetrapeptide Diastereomers Containing α-Phenyl-α-(2-pyridyl)glycine
- 超分子的に制御できる分子磁性
- Structual Analyses for Asymmetric Derivatives of Ascidiacyclamide by X-ray Diffraction and NMR Spectroscopy
- X-Ray Molecular and Crystal Structure of Imidazolopyrroloquinoline, a Main Reaction Product of Pyrroloquinolinequinone (PQQ) and L-Tryptophan in Vitro
- Unusual Intermolecular Short Contacts of C…C = 2.3Å in Crystal Structure of Copper Complex of Schiff Base of Vitamin B_6 Phosphate Ester; Does It Reveal an Intermediate Structure to σ-Covalent Bond Formation ?
- Conformation and Sodium Coordinate Forms of an Endothelin Inhibitor BQ123・Na, Cyclo(-D-Trp-D-Asp^~-Pro-D-Val-Leu-)・Na^+, in the Crystal
- Metal-Azide-Pyrimidine Complexes M(N_3)_2(pm) with a Three-Dimensional Network Showing Weak Ferromagnetism for M = Mn and Fe and Antiferromagnetism for M = Co and Ni
- Low-Temperature Heat Capacities and Ferromagnetic Phase Transition of the Organic Free Radical Ferromagnet, 4-(4-Chlorobenzylideneamino)-2,2,6,6-tetramethylpiperidin-1-oxyl (CATMP)
- Aggregation Feature of Fluorine-Substituted Benzene Rings and Intermodular C-H…F Interaction: Crystal Structure Analyses of Mono- and Trifluoro-L-phenylalanines
- Turnip Mosaic Virus Genome-Linked Protein VPg Binds C-Terminal Region of Cap-Bound Initiation Factor 4E Orthologue Without Exhibiting Host Cellular Specificity
- μSR of the Organic Radical Ferromagnet, 4-(p-Chlorobenzylideneamino)-2, 2, 6, 6-tetramethylpiperidin-1-yloxyl
- Organic Radicals Exhibiting Intermolecular Ferromagnetic Interactions with High Probability: 4-Arylmethyleneamino-2,2,6,6-tetramethylpiperidin-1-yloxyls and Related Compounds
- Domain-dependent Interaction of Eukaryotic Initiation Factor eIF4A for Binding to Middle and C-terminal Domains of eIF4G
- Role of Each Repeat Peptide in Aggregation of Tau Microtubule-binding Domain
- Effect of DNA on Filament Formation of Tau Microtubule-Binding Domain : Structural Dependence of DNA
- Marked Difference Between Self-aggregations of First and Fourth Repeat Peptides on Tau Microtubule-binding Domain in Acidic Solution
- Study of Self-Aggregation Mechanism of Microtubule-Binding Domain of Tau Protein
- Effect of N-Terminal Region of eIF4E and Ser65-Phosphorylation of 4E-BP1 on Interaction between eIF4E and 4E-BP1 Fragment Peptide
- N-terminal Secondary Structures of Second and Third Repeat Fragments Responsible for Self-assembly of Tau Microtubule-binding Domain
- PH-Dependent Filament Formation of Repeat Peptide of Microtubule-binding Domain of Tau Protein
- Possible Role of Each Repeat Structure of the Microtubule-Binding Domain of the Tau Protein in In Vitro Aggregation
- Solvent-dependent Conformational Change of Third Repeat Fragment of Microtubule-binding Domain Responsible for Filament Formation of Tau Protein
- Crystal and Molecular Structure of an (S)-(+)-Enantiomer of Modafinil, a Novel Wake-Promoting Agent
- Conformational Analysis of Four Repeat Fragments in Tau Microtuble Binding Domain
- Analysis of aggregation mechanism of microtuble binding domain in tau protein
- Proposed Mechanism of Ferromagnetic Interaction of Organic Ferromagnets : 4-(Arylmethyleneamino)-2,2,6,6-tetramethylpiperidin-1-oxyls and Related Compounds
- Ferromagnetism in Organic Radical Crystal of 4-(p-Chlorobenzylideneamino)-2,2,6,6-tetramethylpiperidin-1-oxyl
- Syntheses and Structures of Novel Fused-Ring Systems Containing Six or Seven Sulfur Atoms : 2,3:5,6-Bis(ethylenedithio)thieno[3,2-b]thiophene and 3,4:6,7-Bis(ethylenedithio)thieno[3,2-c][1,2]dithiin
- An Organic Ferromagnet with a Tc of 0.4 K. 4-(p-Phenylbenzylideneamino)-2,2,6,6-tetramethylpiperidin-1-oxyl
- A New Organic Ferromagnet: 4-Benzylideneamino-2,2,6,6-tetramethylpiperidin-1-oxyl
- Enantioselective Synthesis of a Phenylalanine Library Containing Alkyl Groups on the Aromatic Moiety : Confirmation of Stereostructure by X-Ray Analysis
- Binding Diversity of a Noncovalent-Type Low-Molecular-Weight Serine Protease Inhibitor and Function of a Catalytic Water Molecule : X-Ray Crystal Structure of PKSI-527-Inhibited Trypsin
- Intermolecular Association Model of Antifungal Polyene Macrolide via Concerted =C-H…O Interactions : X-ray Crystal Structure Analysis and Ab Initio Molecular-Orbital Calculations of Chainin
- Difference between Enzymatic and Chemical N-methylations of Protoberberine-Type Alkaloid, Dependent on the Stereoisomer of (-)-N-methyl-7, 8, 13, 13a-tetrahydroberberinium Salt
- Functional Analysis of C-Terminal Amide in Bioactivity of Endomorphin-2 : Conformational Comparison with Its Unamidated Peptide in DMSO Solution
- Structural/Physicochemical Properties of Corycavidine, a Key Intermetabolite in the Biosynthesis of Isoquinoline Alkaloids, Elucidated by X-Ray Crystallography, Solution Conformation and Thermal Behavior Analyses, and Energy Calculations
- Copper(II) Ion-Catalyzed and Molecular Packing-Dependent Dimerization of Pyridoxal 5-Phosphate-Pyridoxamine 5-Phosphate Schiff Base as a Structural Model for in Vitro Transformation of Amino Acid by Pyridoxal 5-Phosphate : X-Ray Crystal Structural investi
- Molecular Ferromagnet, PM[VO(hfac)_2]_2 (PM=pyrimidine, hfac = 1,1,1,5,5,5-hexafluoropenta-2,4-dionate). Ferromagnetic Assembly of Ground High-Spin Molecules
- Structural Requirement for Chiral Recognition of Amino Acid by (18-Crown-6)-tetracarboxylic Acid : Binding Analysis in Solution and Solid States
- Conformational Comparison of μ-Selective Endomorphin-2 with its C-Terminal Free Acid, Studied by ^1H-NMR Spectroscopy and X-Ray Structure Analysis
- Molecular Cynamics Simulations of Bovine Cathepsin B and Its Complex with CA074
- Comparison of Efficiencies of the Fused Heterocyclic Compounds, 9H-Xanthene-2, 7-diols, and Related Chain-Breaking Phenolic Antioxidants
- Characterization of an End Product in a Copper(II)-Mediated Nonenzymatic Reaction of Vitamin B_6 with Amino Acid: X-Ray Crystal Structure of a Dimer of Cu(II). [Pyridoxal 5-Phosphate-Pyridoxamine 5-Phosphate Schiff Base]. 7H_2O
- Solvent-Dependent Conformation of the Third Repeats Fragment in the Microtubule-Binding Domain of Tau Protein, Analyzed by ^1H-NMR Spectroscopy and Molecular Modeling Calculation
- Aggregation Analysis of the Microtubule Binding Domain in Tau Protein by Spectroscopic Methods
- Inhibitory Behavior of Cyanidine and Methylene Blue for Filament Formation of Tau Microtubule-binding Domain
- Structural Studies of [2',6'-Dimethyl-L-tyrosine^1]Endomorphin-2 Analogues Containing Proline Mimics
- Importance of Tyrosine Residue for Filament Formation of Tau Microtubule-binding Domain
- Structural Scaffold of 18-Crown-6 Tetracarboxylic Acid for Optical Resolution of Chiral Amino Acid : X-Ray Crystal Analyses of Complexes of D- and L-Isomers of Serine and Glutamic Acid
- Inclusion Effect and Structural Basis of Cyclodextrins for Increased Extraction of Medicinal Alkaloids from Natural Medicines
- Intermolecular Ferromagnetic Interaction of 4-Benzylideneamino-2,2,6,6-tetramethylpiperidin-1-oxy1
- Intermolecular Ferromagnetic Interaction of 4-(2-Naphthylmethyleneamino)-2,2,6,6-tetramethylpiperidin-1-oxyl
- Importance of Tyr310 residue in the third repeat of microtubule binding domain for filament formation of tau protein
- 希釈冷凍機を用いた極低温のミューエスアール
- Pyrimidines as Ferromagnetic Exchange Couplers in Dinuclear Oxovanadium(IV) Coplexes
- Importance of CH-π Interaction Between I308 and Y310 Residues in the Third Repeat of Microtubule Binding Domain for Tau Filament Formation
- Comparison of the Efficiencies of the Fused Heterocyclic Compounds, 9H-Xanthene-2,7-diols, and Related Chain-Breaking Phenolic Antioxidants
- Synthesis and Conformational Analysis of Dcp-Containing Homo-Oligopeptides
- CH-π Interaction between I308 and Y310 Residues is Required for Self Assembly of Full Length Tau