Uemura Kazunori | National Cardiovascular Center Res. Inst. Suita‐shi Jpn
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概要
関連著者
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Uemura Kazunori
National Cardiovascular Center Res. Inst. Suita‐shi Jpn
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Sugimachi Masaru
Department Of Cardiovascular Dynamics National Cardiovascular Centre Research Institute
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Uemura Kazunori
Department of Cardiovascular Dynamics, National Cardiovascular Center Research Institute
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Sugimachi Masaru
Department Of Artificial Organ Medicine Division Of Surgical Medicine Osaka University Graduate Scho
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Sugimachi Masaru
Department Of Cardiovascular Dynamics Advanced Medical Engineering Center
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Kawada Toru
Department Of Cardiovascular Dynamics Advanced Medical Engineering Center
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KAWADA Toru
Department of Cardiovascular Dynamics, Advanced Medical Engineering Center, National Cardiovascular
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Uemura Kazunori
National Cerebral And Cardiovascular Center Res. Inst. Osaka Jpn
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Takenaka Kotoe
京都大学 院循環器内科
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Sugimachi Masaru
National Cerebral And Cardiovascular Center Res. Inst. Osaka Jpn
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Sunagawa Kenji
Department Of Cardiovascular Dynamics National Cardiovascular Center
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Sunagawa Kenji
Department of Cardiovascular Medicine, Graduate School of Medical Sciences, Kyushu University
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Sugimachi Masaru
Department of Cadiovascula Dynamics, National Cardiovascular Center Research Institute
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Takanaka Kotoe
京都大学 院循環器内科学
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Kawada T
National Cardiovascular Center Res. Inst. Suita‐shi Jpn
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Sugimachi Masaru
Dept. Of Cardiovascular Dynamics National Cardiovascular Center
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SHISHIDO Toshiaki
Department of Cardiovascular Dynamics, Research Institute, National Cardiovascular Center
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Inagaki Masashi
Department of Cardiovascular Dynamics, National Cardiovascular Center Research Institute
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Zheng C
Department Of Cardiovascular Control Kochi Medical School
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Zheng Can
Department Of Cardiovascular Control Kochi Medical School
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Zheng Can
Department Of Cardiovascular Dynamics National Cardiovascular Center Research Institute
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Shishido Toshiaki
Department Of Cardiovascular Dynamics National Cerebral And Cardiovascular Center
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Inagaki Masashi
Department Of Cardiovascular Dynamics National Cardiovascular Center
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Sunagawa Kenji
Department of Advanced Therapeutics for Cardiovascular Diseases, Cardiovascular Medicine, Kyushu University Graduate School of Medical Sciences
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Shishido Toshiaki
Department of Cardiovascular Control, Faculty of Medicine, Kochi University
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Sato Takayuki
Department Of Cardiovascular Control Kochi Medical School
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Li Meihua
Department Of Cardiovascular Dynamics Advanced Medical Engineering Center National Cardiovascular Ce
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Sunagawa K
Department Of Cardiovascular Medicine Graduate School Of Medical Sciences
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Li Meihua
Department of Cardiovascular Dynamics, National Cardiovascular Center Research Institute
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Sunagawa Kenji
九州大学 医学研究院循環器内科
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Inagaki Masashi
Department Of Cariovascular Dynamics National Cariovascular Center Research Institute
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Sunagawa Kenji
Department Of Cardiovascular Dynamics National Cardiovascular Center Research Institute
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Zheng Can
高知大学 医学部循環制御学
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Miyazaki Shunichi
The Third Division Department Of Internal Medicine Kyoto University Hospital
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Miyazaki Shunichi
Department Cardiology National Cardiovascular Center
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MIYAMOTO Tadayoshi
Department of Physical Therapy, Faculty of Health Sciences, Morinomiya University of Medical Science
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Zheng Can
Department of Cardiovascular Dynamics, National Cardiovascular Center Research Institute
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Miyamoto Tadayoshi
Department Of Physical Therapy Faculty Of Health Sciences Morinomiya University Of Medical Sciences
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Miyamoto Tadayoshi
国立循環器病センター 研先進医工学センター 循環動態機能部
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Miyamoto Tadayoshi
Department Of Cardiovascular Dynamics National Cardiovascular Center Research Institute
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Kamiya Atsunori
National Cardiovascular Center Res. Inst. Osaka Jpn
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Kamiya Atsunori
名古屋大学環境医学研究所
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Kamiya A
Department Of Neuroimmunology Research Institute Of Environmental Medicine Nagoya University
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Kamiya Atsunori
Departtmen Of Cardiovascular Dynamics National Cardiovascular Center Research Institute
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Satoh Takayuki
Department Of Cardiovascular Control Kochi Medical School
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Miyamoto Tadayoshi
Institute Of Health Science And Physical Education Osaka City University
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Kamiya Atsunori
Department Of Cardiovascular Dynamics Advanced Medical Engineering Center National Cardiovascular Ce
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Sato Takayuki
Department Of Cardiovascular Dynamics Advanced Medical Engineering Center National Cardiovascular Ce
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Inagaki Masashi
Dept. Of Cardiovascular Dynamics National Cardiovascular Center
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Inagaki Masashi
Department Of Cardiovascular Dynamics National Cardiovascular Center Research Institute
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Sato Takayuki
Department Of Cadiovascula Dynamics National Cardiovascular Center Research Institute
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Sato Takayuki
Department Of Cardiovascular Control Kochi University Kochi Medical School
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Miyamoto Tadayoshi
Department of Acupuncture, Morinomiya University of Medical Sciences
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Shimizu Shuji
Department of Cadiovascula Dynamics, National Cardiovascular Center Research Institute
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Kamakura Shiro
Department Of Cardiovascular Surgery National Cardiovascular Center
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KAMIYA Atsunori
Department of Cardiovascular Dynamics, Advanced Medical Engineering Center, National Cardiovascular
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Yamazaki Toji
Department of Cardiac Physiology, National Cardiovascular Center Research Institute
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Akiyama Tsuyoshi
Department of Cardiac Physiology, National Cardiovascular Center Research Institute
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Shirao Kuniaki
Gastrointestinal Oncology Division National Cancer Center Hospital
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Yamazaki Toji
Department Of Cardiac Physiology National Cardiovascular Center Research Institute
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Sugimachi Masaru
National Cardiovascular Center Research Institute
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Akiyama Tsuyoshi
Department Of Cardiac Physiology National Cardiovascular Center Research Institute
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Akiyama Tsuyoshi
Department Of Applied Chemistry Faculty Of Engineering Kyushu University
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Shimizu Shuji
Department Of Cardiovascular Dynamics Advanced Medical Engineering Center National Cardiovascular Ce
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Sunagawa Kenji
Division Of Cardiology Department Of Cardiovascular Dynamics National Cardiovascular Center
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Aiba Takeshi
Department Of Cardiovascular And Respiratory Medicine Shiga University Of Medical Science
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Ashihara Takashi
Department Of Cardiovascular And Respiratory Medicine Heart Rhythm Center Shiga University Of Medica
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Shimizu Shuji
National Cerebral And Cardiovascular Center Res. Inst. Osaka Jpn
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Yanagiya Yusuke
The Organization For Pharmaceutical Safety And Research
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Miyamoto Shoichi
Department Of Cardiovascular Medicine Graduate School Of Medicine Kyoto University
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Aiba Takeshi
Department Of Cardiovasculardynamics National Cardiovascular Center
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宮本 忠吉
森ノ宮医療大学保健医療学部
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Shimizu Wataru
Division of Cardiology, National Cardiovascular Center
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宮本 忠吉
大阪市立大学生活科学部健康生理学
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Sugimachi Masaru
National Cardiovascular Center
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Kawada Toru
National Cardiovascular Center
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Hidaka Ichiro
Department of Cardiovascular Dynamics, Research Institute, National Cardiovascular Center
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Sai Kimie
Project Team For Pharmacogenetics National Institute Of Health Sciences
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Miyamoto T
Osaka City Univ.
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Hidaka Ichiro
Department Of Cardiovascular Dynamics National Cardiovascular Center Research Institute
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Sugimachi Masaru
Department Of Cardiovascular Dynamics National Cardiovascular Center Resear
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Sunagawa Kenji
National Cardiovascular Center Research Institute
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YANAGIYA Yusuke
Department of Cardiovascular Dynamics, National Cardiovascular Center Research Institute
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Miyamoto Tadayoshi
Department Of Physical Therapy Morinomiya University Of Medical Sciences
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Kashihara Koji
The Organization Of Pharmaceutical Safety And Research
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Shimizu Wataru
Division Of Arrhythmia And Electrophysiology Department Of Cardiology National Cerebral And Cardiova
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Aiba Takeshi
Department of Cardiology, National Cerebral and Cardiovascular Center
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宮本 忠吉
森之宮医療大学保健医療学部
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Maruo Takeshi
Department of Cardiology, Kurashiki Central Hospital
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Maruo Takeshi
Department Of Cardiovascular Medicine Kyoto University Graduate School Of Medicine
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宮本 忠吉
国立循環器病センター研究所循環動態機能部
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宮本 忠吉
森ノ宮医療大学保健医療学部理学療法学科
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Tatewaki Teiji
The Japan Association for the Advancement of Medical Equipment
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Maruo Takeshi
Department Of Cardiology Kurashiki Central Hospital
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Miyatake Kunio
Department Of Cardiovascular Surgery National Cardiovascular Center
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Tatewaki Teiji
Department Of Cardiovascular Dynamics National Cardiovascular Center Research Institute
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Miyamoto Tadayoshi
大阪市立大学
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Sugimachi M
National Cardiovascular Center Res. Inst. Osaka Jpn
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Miyatake Kunio
国立病院機構大阪南医療センター 循環器科
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Miyatake Kunio
Department Of Internal Medicine National Cardiovascular Center
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MINATOYA Kenji
National Cardiovascular Center
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Maruo Takeshi
Division Of Cardiology Department Of Internal Medicine National Cardiovascular Center
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Arafune Tatsuhiko
National Inst. Of Advanced Industrial Sci. And Technol.
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Arafune T
Graduate School Of Frontier Sciences The University Of Tokyo
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Arafune Tatsuhiko
Inst. For Human Sci. & Biomed. Eng. National Inst. Of Advanced Industrial Science And Tech.
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Miyatake Kunio
Hiroshima General Hospital
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Zheng Can
Japan Association for the Advancement of Medical Equipment
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Miyashita Kotaro
Department Of Cardiology National Cardiovascular Center
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MIYAZAKI Shunichi
the Division of Cardiology National Cardiovascular Center
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Nakatani Satoshi
Department Of Health Sciences Osaka University Graduate School Of Medicine
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Nakatani Satoshi
Department Of Cardiology National Cardiovascular Center
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Takigawa Masateru
Department Of Cardiovascular Medicine Kyoto University Graduate School Of Medicine
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Miyatake Kunio
Department Of Cardiology National Cardiovascular Center
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Miyatake Kunio
National Hospital Organization Osaka Minami Medical Center
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Kashihara Koji
The Organization for Pharmaceutical Safety and Research
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Kusumoto Miyako
Cardiac Division National Cardiovascular Center
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Yamamoto Hiromi
Kinki Univ. School Of Medicine Osaka Jpn
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Takigawa Masateru
Division Of Cardiology Department Of Internal Medicine National Cardiovascular Center
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MORI Hidezo
Department of Cardiac Physiology, National Cardiovascular Center Research Institute
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Yamamoto Hiromi
Department of Cardiovascular Medicine, Graduate School of Medicine, Kyoto University
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Une Dai
Department of Cadiovascular Surgery, Institute of Cardiovasculology, Sakakibara Hospital
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YAMAMOTO Hiromi
Division of Cardiology Department of Internal Medicine, Kinki University School of Medicine
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Sato Takayuki
Department of Cardiovascular Control, Kochi Medical School
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Yoshizawa Makoto
Research Division on Advanced Information Technology, Information Synergy Center, Tohoku University
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Sunagawa Kenji
National Cardiovascular Center Research Institute Department of Cardiovascular Dynamics
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Aiba Takeshi
Pharmaceuticals and Medical Devices Agency
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SANO Shunji
Department of Cardiovascular Surgery, Okayama University Graduate School of Medicine, Dentistry, and
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Mizuno Masaki
Department Of Environmental Health Faculty Of Pharmaceutical Sciences Toho University
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Mizuno Masaki
国立循環器病センター研究所 循環動態機能部
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Mizuno Masaki
Department Of Cardiovascular Dynamics National Cardiovascular Centre Research Institute
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SEKI Kenjiro
Department of Cardiovascular Dynamics, National Cardiovascular Centre Research Institute
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Miyashita K
National Cardiovascular Center
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Li Meihua
Japan Association for the Advancement of Medical Equipment
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3Sato Takayuki
Department of Cardiovascular Control, Kochi Medical School, Nankoku
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2Nagaya Noritoshi
Department of Regenerative Medicine and Tissue Engineering, National Cardiovascular Center
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Mori Hidezo
Department Of Cardiac Physiology National Cardiovascular Center Research Institute
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3sato Takayuki
Department Of Cardiovascular Control Kochi Medical School Nankoku
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Sano Shunji
Department Of Cardiovascular Surgery Okayama University Graduate School Of Medicine Dentistry And Ph
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Mori Hidezo
Department Of Bioscience Department Of Cardiovascular Surgery
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Kashihara Koji
Department of Human System Science, Graduate School of Decision Science and Technology, Tokyo Instit
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Yoshizawa Makoto
Research Division On Advanced Information Technology Information Synergy Center Tohoku University
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Satoh Takayuki
Second department of Physiology, Kochi Medical School
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2nagaya Noritoshi
Department Of Regenerative Medicine And Tissue Engineering National Cardiovascular Center
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SATO Takayuki
Second Department of Physiology, Kochi Medical School
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Seki Kenjiro
Department Of Cardiovascular Dynamics National Cardiovascular Centre Research Institute
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Kashihara Koji
Department Of Human System Science Graduate School Of Decision Science And Technology Tokyo Institut
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Jin Yintie
Department Of Cardiovascular Dynamics National Cardiovascular Center Research Institute
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Yamamoto Hiromi
Division Of Cardiology Department Of Internal Medicine Kinki University School Of Medicine
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Une Dai
Department Of Cardiovascular Dynamics Advanced Medical Engineering Center National Cardiovascular Ce
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Sano Shunji
Department Of Cardiovascular Surgery
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Yamamoto Hiromi
Department Of Cardiovascular Medicine Graduate School Of Medicine Kyoto University
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Sato Takayuki
Department Of Biomolecular Engineering Graduate School Of Bioscience And Biotechnology Tokyo Institu
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Sunagawa Kenji
National Cardiovascular Center Depatment Of Internal Medicine
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Maeda Kumiko
Department Of Medicine Osaka Ekisaikai Hospital
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YAMAMOTO Hiromi
Department of Applied Biology, Faculty of Textile Science and Technology, Shinshu University
著作論文
- 2 Development of Autopilot System for Cardiac Care("State of the Art" Biomedical Technology Developed in Japan Will Inspire Intricate Applications in Cardiology in the 21st Century,Roundtable Discussion 7 (RT7) (I),The 70th Anniversary Annual Scientific M
- Estimation of Preload Recruitable Stroke Work Relationship from Steady-state Hemodynamics Without Recording Ventricular Pressure-volume Relationship(Cardiac Function, Basic/Clinical 1 (M), The 69th Annual Scientific Meeting of the Japanese Circulation Soc
- Acute Myocardial Ischemia Causes Local Glutamate Release via Retrograde Transport of Glutamate Transporters(Metabolism/Biochemistry/Energetics 1 (IHD), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- Steep Repolarization Gradient in the Epicardium Develops Phase-2 Reentry and Subsequent Ventricular Tachyarrhythmias in a Model of the Brugada Syndrome(Arrhythmia, Basic 3 (A), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- PJ-504 Sodium Channel Block with Pilsicainide Accentuates the Arrhythmogenic Substrate in a Model of the Brugada Syndrome(Arrhythmia, Basic 6 (A) : PJ84)(Poster Session (Japanese))
- PJ-341 We Should Assess the Physiological Characteristics of Hypoplastic Right Ventricle for Surgical Management of Pulmonary Atresia With Intact Ventricular Septum(Congenital heart disease/Kawasaki's disease-3, The 71st Annual Scientific Meeting of the J
- PJ-330 Sympathetic Vasoconstriction Affects Graft Flow of Internal Thoracic Artery Only at Rest(Cardiovascular surgery/CABG-2, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- Baroreflex Increases Correlation and Coherence of Muscle Sympathetic Nerve Activity (SNA) with Renal and Cardiac SNAs
- Telemetry and Telestimulation via Implanted Devices Necessary in Long-Term Experiments Using Conscious Untethered Animals for the Development of New Medical Treatments
- PJ-302 Blockade of a7-Nicotinic Acetylcholine Receptors Attenuates Cardio-protective Effects of Donepezil in Rats with Extensive Myocardial Infarction(PJ051,Autonomic Nervous System (H),Poster Session (Japanese),The 73rd Annual Scientific Meeting of The J
- OE-140 Early Short-term Vagal Nerve Stimulation Improves Left Ventricular Function and Attenuates Myocardial Structural Remodeling after Reperfused Myocardial Infarction(OE24,Autonomic Nervous System (H),Oral Presentation (English),The 73rd Annual Scienti
- PJ-236 Both Acute and Chronic-phase Vagal Stimulation Markedly Suppressed Arrhythmic Death and Prevented Remodeling in Rats after Large Myocardial Infarction(Autonomic nervous system(04)(H),Poster Session(Japanese),The 72nd Annual Scientific Meeting of th
- OJ-126 Chronic Vagal Stimulation Enhances Survival of Transplanted Mesenchymal Stem Cells (MSCs) and its Therapeutic Potency after Myocardial Infarction in Rats(Regeneration(angiogenesis / myocardial regeneration)(02)(M),Oral Presentation (Japanese),The 7
- FRS-111 Novel technique to monitor cardiac output by measuring left pulmonary impedance, potentially applicable to patients with a cardiac resynchronization/defibrillation device(New Concepts for Assessing Cardiac Function(M),Featured Research Session,The
- PJ-539 Angiotensin II Attenuates Dynamic Vagal Control of Heart Rate(Neurohumoral factors-3, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- PJ-223 Angiotensin II Attenuates Vagal Stimulation-Induced Acetylcholine Release in the Ventricle(Autonomic nervous system-4, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- PJ-074 Efferent Vagal Nerve Stimulation Suppresses Matrix Metalloproteinase Activity in Myocardial Ischemia-reperfusion Injury in Rabbit(Autonomic nervous system-3, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- PE-265 Vagal Stimulation during Ischemic Period But Not Reperfusion Period Reduces Myocardial Myoglobin Release in the Ischemic Region(Myocardial ischemia-reperfusion, basic/clinical-4 (IHD) PE45,Poster Session (English),The 70th Anniversary Annual Scient
- Acute myocardial ischemia totally damages vagal efferent function whereas partially damages vagal afferent and local acetylcholine releasing function
- Transmural Myocardial Postsystolic Thickening and Dyssynchrony in Myocardial Infarction Assessed by Strain M-mode Imaging(New Ultrasound Technique (I), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- FRS-001 Transmural Distribution of Myocardial Viability in Subendocardial and Transmural Infarction Assessed by Strain M-mode Imaging with Dobutamine Stress Echocardiography(Ultrasound Medicine in Cardiology (I) : FRS1)(Featured Research Session (English)
- FRS-030 High-Resolution Optical Mapping Reveals Cellular Mechanism of T-wave Alternans Preceding Ventricular Fibrillation in a Model of the Brugada Syndrome(Arrhythmia-Basic : Molecular and Genetic : Basis (A) : FRS4)(Featured Research Session (English))
- Deviation of an operating point reduces baroreflex dynamic gain in both neural and peripheral arcs
- Neuronal uptake blockade decelerates the heart rate response more than the arterial pressure response to sympathetic activation
- Conductance volumetry without ex-vivo calibrations for blood conductivity and parallel conductance in small experimental animals
- Telemetry and Telestimulation via Implanted Devices Necessary in Long-Term Experiments Using Conscious Untethered Animals for the Development of New Medical Treatments
- OE-268 Bezold-Jarisch (BJ) Reflex Lowers Arterial Pressure Mainly via the Downward Shift of the Baroreflex Neural Arc(Autonomic Nervous System 3 (H) : OE33)(Oral Presentation (English))
- FRS-022 A BLUETOOTH based telemetry system for the measurement of ventricular pressure-volume relationship in conscious, freely moving rats(Cardiac Hypertrophy (M) : FRS3)(Featured Research Session (English))
- Convenient Automated Conductance Volumetric System
- Estimation of Baroreflex Gain Using a Baroreflex Equilibrium Diagram
- High levels of circulating angiotensin II shift the open-loop baroreflex control of splanchnic sympathetic nerve activity, heart rate and arterial pressure in anesthetized rats
- Venous Return Surface Enables Us to Predict Accurately Cardiac Output at Various Hemodynamlc Conditions
- Open-loop dynamic and static characteristics of the carotid sinus baroreflex in rats with chronic heart failure after myocardial infarction
- OE-196 Single Point Swan-Ganz Cardiac Output (CO), Right (P_) and Left (P_) Atrial Pressures Enables Accurate Prediction of Changes in Hemodynamics(Cardiac Function, Basic/Clinical 1 (M) : OE24)(Oral Presentation (English))