Sugiura Seryo | The Second Department Of Lnternal Medicine Faculty Of Medicine University Of Tokyo
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概要
関連著者
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Sugiura Seryo
The Second Department Of Lnternal Medicine Faculty Of Medicine University Of Tokyo
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Sugiura Seiryou
The Department Of Human Environmental Studies The University Of Tokyo
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Sugiura Seiryou
東京大学 循環器内科
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Sugiura Seiryo
Department Of Cardiovascular Medicine University Of Tokyo Graduate School Of Medicine
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杉浦 清了
東京大学大学院新領域創成科学研究科
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Sugiura Seiryo
Department Of Human And Engineered Environmental Studies Graduate School Of Frontier Sciences The Un
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Sugiura Seiryo
東京大学 医学系研究科循環器内科
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久田 俊明
東京大学
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Sugiura Seiryou
Biomechanics Division Institute Of Environmental Studies Graduate School Of Frontier Sciences Univer
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Nishimura Satoshi
Department Of Cardiovascular Medicine The University Of Tokyo:presto Science And Technology Agency
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Nishimura Satoshi
Department Of Cardiovascular Medicine The University Of Tokyo
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杉浦 清了
東京大学
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Nishimura Satoshi
Department Of Applied Chemistry And Chemical Engineering Graduate School Of Science And Engineering
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久田 俊明
東京大学大学院新領域創成科学研究科
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久田 俊明
東京大学生産技術研究所
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Yamashita Hiroshi
Department Of Cardiovascular Medicine The University Of Tokyo
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Yamashita Hiroshi
Department Of Otolaryngology Yamaguchi University Graduate School Of Medicine
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Yamashita Hiroshi
Department Of Cardiovascular Medicine Graduate School Of Medicine University Of Tokyo
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渡邉 浩志
東京大学大学院新領域創成科学研究科
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久田 俊明
東京大学大学院新領域創成科学研究科環境学専攻
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HOSOYA Yumiko
Department of Cardiovascular Medicine, The University of Tokyo
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Hosoya Yumiko
Department Of Cardiovascular Medicine The University Of Tokyo
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NAGAI Ryozo
Department of Cardiovascular Medicine, University of Tokyo
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鷲尾 巧
東京大学大学院新領域創成科学研究科
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Nagai Ryozo
Department Of Cardiology Kitano Hospital Medical Research Institute
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Nagai Ryozo
Department Cardiovascular Medicine The University Of Tokyo Hospital
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久田 俊明
東大
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岡田 純一
東京大学大学院新領域創成科学研究科
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杉浦 清了
東大
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Hosoya Yumiko
Department Of Cardiology Sakakibara Heart Institute Japan Research Promotion Society For Cardiovascu
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岡田 純一
東京大学大学院新領域創成科学研究科人間環境学専攻
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NAGASAKI Mika
Department of Cardiovascular Medicine, The University of Tokyo
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Manabe Ichiro
東京大学 循環器内科
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Manabe Ichiro
Department Of Caldiology University Of Tokyo
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Manabe Ichiro
Department Of Cardiovascular Medicine Nano-bioengineering Education Program Graduate School Of Medic
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Nagasaki Mika
Department Of Cardiology Sakakibara Heart Institute
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Kato Masayoshi
Department Of Cardiovascular Medicine Graduate School Of Medicine University Of Tokyo
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Nagai Ryouzou
Department Of Cardiovascular Medicine The University Of Tokyo Graduate School Of Medicine
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Katou Masayoshi
Department Of Cardiovascular Medicine The University Of Tokyo
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Nagasaki Mika
Department Of Cardiovascular Medicine The University Of Tokyo
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Manabe Ichirou
Department Of Cardiology Tokyo University
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Manabe Ichiro
Department Of Cardiovascular Medicine The University Of Tokyo
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Nagai Ryouzou
Department Of Cardiovascular Medicine Tokyo University Graduate School Of Medicine
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Manabe Ichiro
Department Of Cardiology The University Of Tokyo
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Ishikawa Michiro
Department Of Cardiovascular Medicine Nano-bioengineering Education Program Graduate School Of Medic
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渡邉 浩志
東京大学大学院 新領域創成科学研究科
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Nagai Ryouzou
Department of Cardiovascular Medicine, The University of Tokyo
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Nagai Ryouzou
Department Of Cardiovascular Medicine Graduate School Medicine University Of Tokyo
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Sugiura Seiryou
The Institute of Environmental Studies, Graduate School of Frontier Sciences, The University of Toky
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渡邉 浩志
東大
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陳 献
九大
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Nagai R
Department Of Cardiology The University Of Tokyo
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Sugiura Seiryou
Department of human and engineered environmental studies, Graduate School of Frontier Sciences, The
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Sugiura Seiryou
Department Of Cardiovascular Medicine University Of Tokyo Graduate School Of Medicine
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Katou Masayoshi
Department of Cardiology, Tokyo University
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Nagai Ryozo
Department Of Cardiovascular Medicine Graduate School Of Medicine University Of Tokyo
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Nagai Ryouzou
The Department Of Cardiovascular Diseases Graduate School Of Medicine University Of Tokyo
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鷲尾 巧
JST
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砂川 賢二
国立循環器センター
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Sugiura Seiryou
Graduate School Of Frontier Sciences University Of Tokyo
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Kato Masayoshi
Department of Ischemic Circulatory Physiology, University of Tokyo
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久田 俊明
東大 大学院新領域創成科学研究科
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Manabe Ichiro
Department Of Cardiovascular Medicine The University Of Tokyo:presto Science And Technology Agency
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菅野 剛
東大
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布引 英治
東京大学大学院新領域創成科学研究科修士課程
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岡田 純一
科学技術振興機構
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Sugano Takeshi
東大
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菅野 剛
前東大
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瀬尾 欣也
東京大学大学院新領域創成科学研究科
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砂川 賢二
九大
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黒川 洋
東京大学大学院新領域創成科学研究科
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Sugiura Seiryo
Graduate School of Frontier Sciences, The University of Tokyo
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Hisada Toshiaki
Graduate School of Frontier Sciences, The University of Tokyo
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Watanabe Hiroshi
Graduate School of Frontier Sciences, The University of Tokyo
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Seo Kinya
Department Of Human And Engineered Environmental Studies Graduate School Of Frontier Sciences The Un
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Sugiura Seiryo
Department Of Cardiovascular Medicine Graduate School Of Medicine University Of Tokyo
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Sugiura Seiryo
Biomechanics Laboratory Institute Of Environmental Studies Graduate School Of Frontier Sciences Univ
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Eto Koji
Laboratory of Stem Cell Therapy, Center for Experimental Medicine, Institute of Medical Science, The
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Eto Koji
Laboratory Of Stem Cell Therapy Center For Experimental Medicine Institute Of Medical Science The Un
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Eto Koji
Laboratory Of Microbial Technology Department Of Bioscience And Biotechnology Faculty Of Agriculture
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平林 智子
名古屋大学大学院工学研究科機械理工学専攻
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Nishimura Satoshi
Japan Department of Cardiovascular Medicine, The University of Tokyo
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Hosoya Yumiko
Japan Department of Cardiovascular Medicine, The University of Tokyo
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Yamashita Hiroshi
Japan Department of Cardiovascular Medicine, The University of Tokyo
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Hisada Toshiaki
Graduate School Of Frontier Sciences The University Of Tokyo
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Hisada Toshiaki
Institute Of Environmental Studies Graduate School Of Frontier Science The University Of Tokyo
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Watanabe Hiroshi
Super-fine Sr Lithography Laboratory Association Of Super-advanced Electronics Technologies(aset) At
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Hisada T
Graduate School Of Frontier Sciences The University Of Tokyo
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Sugiura Seiryo
Graduate School Of Frontier Sciences The University Of Tokyo
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Seo Kinya
Department Of Human And Engineered Environmental Studies Graduate School Of Frontier Sciences The Un
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Hisada Toshiaki
Graduate School Of Engineering University Of Tokyo
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Nagai Riozo
Second Department Of Internal Medicine Gunma Univercity School Of Medicine
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WATANABE Hiroshi
Graduate School of Electrical and Electronic Engineering and Venture Business Laboratory, Chiba University
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SUGIURA Seiryo
Department of Cardiothoracic Surgery and the Second Department of Internal Medicine, Faculty of Medicine, University of Tokyo
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陳 献
九州大学デジタルメディシン・イニシアティブ
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FUJITA Hideo
Department of Cardiology, The University of Tokyo
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稲垣 正司
国立循環器病センター内科心臓部門
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砂川 賢二
九州大学大学院医学研究院 循環器内科
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Kadowaki Takashi
Department of Health Science, Shiga University of Medical Science
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杉町 勝
国立循環器病センター研究所
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西村 智
東京大学 循環器内科
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西村 智
東京大学附属病院循環器内科
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平林 智子
東京大学大学院新領域創成科学研究科
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NISHIMURA Satoshi
Department of Oral Surgery, Nihon University School of Dentistry
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鷲尾 巧
科学技術振興機構
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布引 英治
東大
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小柴 信子
東京大学大学院新領域創成科学研究科
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陳 媛
東大
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山本 雅史
JST
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岡田 純一
JST
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久田 俊明
東京大学 大学院新領域創成科学研究科 環境学専攻
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杉浦 清了
東京大学 大学院新領域創成科学研究科 環境学専攻
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渡邉 浩志
東京大学 大学院新領域創成科学研究科 環境学専攻
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杉町 勝
自治医科大学 統合生理学 循環器内科
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西村 智
東大・循環器内科
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Kadowaki T
Department Of Translational Research For Healthcare And Clinical Science University Of Tokyo
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MANABE Ichiro
Nano Bioengineering Education Program, The University of Tokyo
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SUGIURA Seiryo
Department of Human and Engineered Environmental Studies, Graduate School of Frontier Sciences, The
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山本 雅史
Jst:東京大学大学院新領域創成科学研究科
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日高 一郎
国立循環器病センター研究所循環動態機能部
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久田 俊明
正東京大学大学院新領域創成科学研究科
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佐山 慶
東大
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黒川 洋
東大
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細谷 弓子
東京大学附属病院循環器内科
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渡邊 浩志
東京大学大学院新領域創成科学研究科人間環境学専攻
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SUGANO Takeshi
Former Graduate Student of Graduate School of Frontier Sciences, The University of Tokyo
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KUROKAWA Hiroshi
Department of Internal Medicine, Fujita-Gakuen Health University School of Medicine
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Sugano Takeshi
Former Graduate Student Of Graduate School Of Frontier Sciences The University Of Tokyo
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Kadowaki Takashi
Department Of Translational Research For Healthcare And Clinical Science University Of Tokyo
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Kadowaki Takashi
東京大学 医学系研究科代謝栄養病態学
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砂川 賢二
九大循環器内科
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杉町 勝
国立循環器病センター研究所先進医工学センター循環動態機能部
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Kadowaki Takashi
Department Of Cardiovascular Medicine Graduate School Of Medicine University Of Tokyo
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Kohro Takahide
Department Of Translational Research For Healthcare And Clinical Science University Of Tokyo
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Fujita Hideo
Department Of Cardiovascular Medicine Graduate School Of Medicine University Of Tokyo
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稲垣 正司
国立循環器病センター研究所循環動態機能部
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稲垣 正司
国循
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稲垣 正司
国立循環器病センター研究所
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Fujita Hideo
Department Of Cardiovascular Medicine The University Of Tokyo
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Kohro Takahide
Department Of Translational Research For Healthcare And Clinical Science
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Kohro Takahide
Department Of Translational Research For Health Care And Clinical Science Graduate School Of Medicin
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IKEBE Mitsuo
Department of Physiology, Massachusetts Medical Center
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Fukano Hana
Department of Mechanical Engineering, Faculty of Engineering, the University of Tokyo
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Nagai Shinya
Graduate School of Frontier Sciences, The University of Tokyo
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Sugiura Seiryou
Biomechanics Division, Institute of Environmental Studies, Graduate School of Frontier Sciences, Uni
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Fujita Hideo
Department Of Aeronautics University Of Tokyo
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Kurokawa Hiroshi
Department Of Human And Engineered Environmental Studies Graduate School Of Frontier Sciences The Un
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Kurokawa Hiroshi
Department Of Bacterial And Blood Products National Institute Of Infectious Diseases
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Fukano Hana
Department Of Mechanical Engineering Faculty Of Engineering The University Of Tokyo
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Ikebe Mitsuo
Department Of Physiology University Of Massachusetts Medical School
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Ikebe Mitsuo
Department Of Physiology Massachusetts Medical Center
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Nagai Shinya
Graduate School Of Frontier Sciences The University Of Tokyo
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Nagai Ryozo
Department Of Cardiovascular Medicine Graduate School Of Medicine The University Of Tokyo
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Nagai Ryozo
Department Of Cardiovascular Medicine Graduate School Of Medicine Faculty Of Medicine The University
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Kadowaki Takashi
Department Of Human Genetics Graduate School Of Medicine University Of Tokyo
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Nagai Ryouzou
Department Of Cardiovascular Medicine University Of Tokyo Graduate School Of Medicine
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日高 一郎
国立循環器病研究センター研究所
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平林 智子
名古屋大学大学院 工学研究科
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Kadowaki Takashi
Department Of Cardiology Kawasaki Medical School
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砂川 賢二
九州大学大学院医学研究院
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IKEBE Mitsuo
Department of Physiology and Biophysics, Case Western Reserve University
著作論文
- 実用化を目指す心臓シミュレーターUT Heart
- 大動脈有限要素モデルによる異方性超弾性構成式の検討
- マルチスケール・マルチフィジックス心臓シミュレータ
- 2310 大動脈解離の成因に関する力学的検討(OS23.生命体統合シミュレーション(2),ポスターセッションP-2)
- 2 医療・創薬のためのマルチスケール・マルチフィジクス心臓シミュレータ(次世代統合シミュレーション技術)
- コンピュータシミュレーション
- 133 多孔質超弾性理論に基づく冠循環系と左右両心室の流体構造連成解析(流体構造連成解析(2),OS17 流体構造連成解析)
- 2013 超音波ドップラー法による流体構造連成心臓シミュレータの検証(OS-20C,OS-20 流体構造連成解析)
- F07-(3) 流体構造連成有限要素法に基づくマルチスケール・マルチフジックス心臓シミュレータの開発(流体関連振動研究の新展開,先端技術フォーラム)
- 心筋梗塞における壁運動および心腔内血流の流体構造連成有限要素解析(OS20b 流体構造連成解析)
- 流体構造連成有限要素法に基づくマルチスケール・マルチフィジックス心臓シミュレータの開発(力学シミュレーション技術,生体医工学における力学シミュレーション)
- Adipose Tissue Remodeling and Malfunctioning in Obesity Revealed by in vivo Molecular Imaging
- 機械的伸展に対する心筋組織の膜電位応答とその数理モデルによる不整脈シミュレーション
- 混合体理論に基づく冠循環数理モデルの定式化
- 826 混合体理論に基づく冠循環モデルの理論構築(J05-2 生命体統合シミュレーション(2),ジョイントセッション,21世紀地球環境革命の機械工学:人・マイクロナノ・エネルギー・環境)
- 計算科学が解き明かす大動脈基部のメカニクス--シミュレーションによる生体機能の解析 (第1土曜特集 大動脈瘤--基礎と臨床) -- (基礎)
- 2309 ヒト心臓の僧帽弁開閉シミュレーション(OS23.生命体統合シミュレーション(2),ポスターセッションP-2)
- AFM・CLSM重ね合わせによる心筋細胞のT管構造の可視化
- ここまできたコンピュータシミュレーション, マルチスケール心臓シミュレータ
- 1 Multi-physics, Multi-scale Simulator for Heart Research : Integration of Knowledge on Molecular Dynamics to Solve the Clinical Problems("State of the Art" Biomedical Technology Developed in Japan Will Inspire Intricate Applications in Cardiology in the
- Finite Element Analysis of Ventricular Wall Motion and Intra-Ventricular Blood Flow in Heart with Myocardial Infarction(Bioengineering)
- 心筋細胞のCa^wave伝播と収縮のマルチフィジックス有限要素解析(OS16c 生体力学における新しい計算解析手法)
- 力学・電気化学効果を考慮した心筋細胞モデル化に関する検討
- OE-202 Chronic Inflammation, Macrophage Recruitment and CD8+ T Cell Activation in Obese Adipose Tissue Visualized by in vivo Molecular Imaging(OE35,Metabolic Syndrome (H),Oral Presentation (English),The 73rd Annual Scientific Meeting of The Japanese Circu
- OE-013 Platelet Kinetics in Thrombus Formation, and Inflammatory Status Revealed by in Vivo Molecular Imaging(OE03,Thromboembolism/Antithrombotic Therapy/Thrombolysis (IHD),Oral Presentation (English),The 73rd Annual Scientific Meeting of The Japanese Cir
- FRS-022 Adipogenesis in Obesity Requires Interplay between Differentiating Adipocytes, Stromal Cells and Blood Vessels(Diabetes/Obesity (basic), The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- PE-180 Insulin Regulates Glucose Uptake in Adipocytes through Cortical Actin Remodeling and Activating Fusion Process of GLUT4 Vesicles with Plasma Membrane(Diabetes/Obesity/Metabolic syndrome(05)(H),Poster Session(English),The 72nd Annual Scientific Meet
- OE-137 Simultaneous imaging of Ca2+ signal and t-tubule structure during contraction of cardiomyocytes for the study of local excitation-contraction coupling(Cardiac function, basic/clinical(01)(M),Oral Presentation(English),The 72nd Annual Scientific Mee
- OE-134 Responses of Single Ventricular Myocytes to Dynamic Axial Stretching(Cardiac function, basic/clinical(01)(M),Oral Presentation(English),The 72nd Annual Scientific Meeting of the Japanese Circulation Society)
- OE-097 Local Cell Dynamics and Vascular Malfunction in Obese Adipose Tissue Inflammation(Diabetes/Obesity/Metabolic syndrome(01)(H),Oral Presentation(English),The 72nd Annual Scientific Meeting of the Japanese Circulation Society)
- FRS-113 T-tubule System is a Major Supporting Structure Against the Transverse Mechanical Stress in Cardiac Myocytes(New Concepts for Assessing Cardiac Function(M),Featured Research Session,The 72nd Annual Scientific Meeting of the Japanese Circulation So
- FRS-056 Adipogenesis and Angiogenesis in Obesity Requires Close Interplay Between Diffentiating Adipocytes, Macrophages, and Endothelial Cells(New Insights into Metabolic Syndrome(02)(H),Featured Research Session,The 72nd Annual Scientific Meeting of the
- PE-416 Analysis of GLUT4 Translocation and Cortical Actin Remodeling in Adipocytes by Live-cell Imaging Provided Clues to Treatment for Insulin Resistance(Diabetes/Obesity/Metabolic syndrome-06, The 71st Annual Scientific Meeting of the Japanese Circulati
- OE-120 Close Relationships between Angiogenesis and Adipogenesis in Obesity Revealed by a Novel Visualization Technique of Living Adipose Tissue(Diabetes/Obesity/Metabolic syndrome-1 (H) OE20,Oral Presentation (English),The 70th Anniversary Annual Scienti
- Contractile Dysfunction of the Cardiomyopathic Hamster (BIO-TO2 Strain) Myocytes in Pronounced under High Load Conditions(Cardiac Function, Basic/Clinical 4 (M), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- Microtubules Modulate the Mechanical Property of Isolated Rat Cardiomyocytes Only against the Shear Stress in Long Axis Direction(Cardiac Function, Basic/Clinical 4 (M), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- Measurement of Transverse Stiffness during Contraction and Relaxation of a Single Cardiomyocyte(Cardiac Function, Basic/Clinical 3 (M), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- Carbocyl-terminal Fragment of Myosin Light Chain Kinase Increases Actin Translocation Velocity without Altering ATPase Activity or Unltary Displacement(Cardiac Function, Basic/Clinical 3 (M), The 69th Annual Scientific Meeting of the Japanese Circulation
- Myosin Subfragment-2 (S-2) is Important for the Motor Function of the Molecule(Cardiac Function, Basic/Clinical 3 (M), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- OE-197 Single Cell Mechanics of Cardiomyocytes under Isometric, Unloaded and Physiologically Loaded Conditions(Cardiac Function, Basic/Clinical 1 (M) : OE24)(Oral Presentation (English))
- FRS-017 Carboxyl terminal region of myosin light chain kinase increases actin translocation velocity without altering ATPase activity(Cardiac Hypertrophy (M) : FRS3)(Featured Research Session (English))
- 801 階層型多相混合体冠循環モデルに関する検討(OS24.一般セッション(1) 心臓-循環器系生体解析,オーガナイズドセッション)