Okigaki Mitsuhiko | 京都府立医科大学 循環器・腎臓内科学
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概要
関連著者
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Okigaki Mitsuhiko
京都府立医科大学 循環器・腎臓内科学
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Okigaki Mitsuhiko
Department Of Cardiovascular Medicine Kyoto Prefectural University Of Medicine
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Matsubara Hiroaki
Department of Cardiovascular Medicine, Kyoto Prefectural University of Medicine
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Matsubara Hiroaki
Department Of Cardiology Kyoto Prefectural University Of Medicine
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Okigaki Mitsuhiko
Department of Cardiovascular Medicine, Kyoto Prefectural University School of Medicine
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Okigaki Mitsuhiko
Division Of Hypertension And Nephrology Department Of Internal Medicine Kyoto Prefectural University
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YAMADA Hiroyuki
Department of Materials Engineering, Graduate school of Engineering, The University of Tokyo
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Yokoi Hirokazu
Department Of Cardiovascular Medicine Kyoto Prefectural University School Of Medicine
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Osako Motohiko
Department Of Cardiovascular Medicine Kyoto Prefectural University Of Medicine
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ANDO Katsuyuki
University of Tokyo
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Amano Katsuya
University Of Tokyo
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Amano Katsuya
Department Of Cardiovascular Medicine Kyoto Prefectural University School Of Medicine
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URA Nobuyuki
Teine Keijinkai Hospital
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Urao Norifumi
Department of Cardiovascular Medicine, Kyoto Prefectural University School of Medicine
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Ura Nobuhuki
Second Department Of Internal Medicine Sapporo Medical University School Of Medicine
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Takahashi Tomosaburo
Department Of Cardiovascular Medicine Kyoto Prefectural University School Of Medicine
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Ura Nobuyuki
Second Department Of Internal Medicine Sapporo Medical University School Of Medicine
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Takahashi Tomosaburou
Department Of Cardiovascular Medicine Kyoto Prefectural University School Of Medicine
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Matsuo Akiko
Department Of Cardiology Kyoto First Red Cross Hospital
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Arihara Masayasu
Department Of Emergency Medicine Kyoto First Red Cross Hospital
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takahashi tomosaburo
Department of Cardiovascular Medicine, Kyoto Prefectural University School of Medicine
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Tsubakimoto Yoshinori
Department of Cardiolgy, Kyoto Prefectural University of Medicine
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Matsui Akihiro
Department of Cardiolgy, Kyoto Prefectural University of Medicine
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Yokoi Hirokazu
Department of Cardiovascular Medicine, Kyoto Prefectural University School of Medicine
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Ashihara Eishi
Department of Transfusion Medicine and Cell Therapy (E.A., T.M.), Kyoto University Hospital
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Ashihara Eishi
京都府立医科大学 医学部医学科内科学教室血液・腫瘍内科学
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Ashihara Eishi
Department Of Transfusion Medicine And Cell Therapy (e.a. T.m.) Kyoto University Hospital
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Ashihara Eishi
Department Of Cardiovascular Medicine Graduate School Of Medicine Kyoto Prefectural University Of Me
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Tsubakimoto Yoshinori
Department Of Cardiolgy Kyoto Prefectural University Of Medicine
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Mori Yasukiyo
Cardiovascular Division Department Of Medicine Ii Kansai Medical University
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Mori Yasukiyo
京都府立医科大学 循環器内科学
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Maekawa Taira
Transfusion Medicine and Cell Therapy, Kyoto University Hospital
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Maekawa Taira
京都府立医科大学 医学部医学科内科学教室血液・腫瘍内科学
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Maekawa Taira
Department Of Transfusion Medicine And Cell Therapy (e.a. T.m.) Kyoto University Hospital
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Maekawa Taira
Jr大阪鉄道病院 血液内分泌内科
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TSUTSUI Hiroyuki
Hokkaido University
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Hoshikawa Yoshiko
Div. Of Molecular And Genetic Medicine Dep. Of Genetic Medicine And Regenerative Therapeutics Gradua
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Takata Hiroki
Hokkaido University
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Katsume Asako
Department of Cardiology, Kyoto Prefectual University of Medicine
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Takata Hiroki
Department of Cardiovascular Medicine, Kyoto Prefectural University School of Medicine
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Mori Yasukiyo
Department of Cardiovascular Medicine, Kyoto Prefectural University School of Medicine
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Tabara Yasuharu
国立循環器病センター研究所 疫学部
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Matsui Akihiro
Departments Of Cardiovascular Medicine Kyoto Prefectural University School Of Medicine
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Katsume Asako
Department Of Cardiology And Vascular Regenerative Medicine Kyoto Prefectural University Of Medicine
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Maekawa Taira
Department of Transfusion Medicine and Cell Therapy (E.A., T.M.), Kyoto University Hospital
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Ura Nobuyuki
Second Department Of Internal Medicine Sapporo Medical Unversity School Of Medicine
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Ura Nobuyuki
大阪大学 医学系研究科老年腎臓内科学
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Makino H
Department Of Medicine And Clinical Science Okayama University Graduate School Of Medicine And Denti
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Matsuoka Hiroaki
大阪大学 医学系研究科老年・腎臓内科学
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Iwasaka Toshiji
Department of Medicine 2 Kansai Medical University
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Imamura Hiroji
Department Of Thoracic And Cardiovascular Surgery Kansai Medical University
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Amano Katsuya
Department of Cardiovascular Medicine, Kyoto Prefectural University School of Medicine
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AZUMA Akihiro
Department of Cardiology, National Shiga Hospital
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Yamada Hiroyuki
Ami-kyoto Multi-center Risk Study Group
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Azuma A
Department Of Cardiology National Shiga Hospital
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Azuma Akihiro
松下電器健康保険組合松下記念病院
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Tarutani Yasuhiro
Division Of Cardiology Department Of Medicine Kohka Public Hospital
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Matsubara Hiroaki
Cardiovascular Division Department Of Medicine Ii Kansai Medical University
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Masaki Hiroya
Department of Clinical Sciences and Laboratory Medicine, Kansai Medical University
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Imamura Hiroji
Depart. Of Surgery School Of Medicine Keio University
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Iwasaka Toshiji
Cardiovascular Division, Department of Medicine II, Kansai Medical University
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Kawahito Hiroyuki
Department Of Cardiology Saiseikai Shigaken Hospital
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Hirai Hideyo
Department of Microbiology, Kyoto Prefectural University School of Medicine
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Imanishi Jiro
Department of Microbiology, Kyoto Prefectural University School of Medicine
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Hirai Hideyo
Department Of Microbiology (h.h. J.i.) Kyoto Prefectural University School Of Medicine
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Tabara Yasuharu
西予市立野村病院 内科
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Tsubakimoto Yoshinori
Department Of Cardiovascular Medicine Kyoto Prefectural University School Of Medicine
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Imanishi Jiro
Department Of Microbiology (h.h. J.i.) Kyoto Prefectural University School Of Medicine
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Imamura Hiroji
Department of Thoracic Cardiovascular Surgery, Kansai Medical University
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Kurihara Hirohiko
National Defense Medical College
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Kumagai Hiroo
Department Of Nephrology National Defense Medical College
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MIYAZAKI Mizuo
Department of Pharmacology, Osaka Medical College
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Okada Takayuki
Cardiovascular Center Kansai Medical University
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Che Jishan
Department Of Cardiolovascular Medicine Kyoto Prefectural University Of Medicine
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Takai S
Department Of Cardiology Kyoto First Red Cross Hospital
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YOKOYAMA Mitsuhiro
Division of Cardiovascular and Respiratory Medicine, Department of Internal Medicine, Kobe Universit
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KUMAGAI Hiroo
National Defense Medical College
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NISHIKAWA Susumu
Department of Cardiovascular Medicine, Nantan General Hospital
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Matsunaga Shinsaku
Department of Cardiovascular Medicine, Kyoto Prefectural University School of Medicine
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Nishikawa Susumu
Department Of Cardiovascular Medicine Nantan General Hospital
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Yasue H
Kumamoto Univ. School Of Medicine
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Yokoyama Mitsuhiro
Department Of Cardiovascular Medicine Awaji Prefectural Hospital
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Yokoyama Mitsuhiro
Division Of Cardiovascular And Respiratory Medicine Department Of Internal Medicine Kobe University
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Kawashima Seinosuke
Division Of Cardiovascular And Respiratory Medicine Kobe University Graduate School Of Medicine
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Hiroe Michiaki
Department Of Medicine Tokyo Medical And Dental University
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Takai Shinji
Department Of Cardiology Kouseikai Takeda Hospital
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Yasue H
Division Of Molecular And Genetic Medicine Department Of Genetic Medicine And Regenerative Therapeut
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JIN Denan
Department of Pharmacology, Osaka Medical College
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Yokoyama Mitsuhiro
神戸大学 循環器内科学
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Kishita Eigo
Department Of Cardiovascular Medicine Kyoto Prefectural University Of Medicine
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Takai Shinji
Department Of Pharmacology Osaka Medical College
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FUJII Hirofumi
Department of Radiology, School of Medicine, Keio University
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Mani Hiroki
Department Of Clinical Molecular Genetics And Laboratory Medicine Kyoto Prefectural University Of Me
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Kawashima Seinosuke
Division Of Cardiovascular And Respiratory Medicine Department Of Internal Medicine Kobe University
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Jin Denan
Department Of Pharmacology Osaka Medical College
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Sawada Takahisa
Department of Cardiovascular Medicine, Kyoto Prefectural University of Medicine
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ITO Masaaki
Mie University
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Ishii Masao
Japan Medical Association
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IRIE Hidekazu
Department of Cardiology, Kouseikai Takeda Hospital
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che jishan
Department of Cardiovascular Medicine, Kyoto Prefectural University School of Medicine
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Yamaguchi Shinichiro
Department of Cardiology, Kyoto Prefectual University of Medicine
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Kishita Eigo
Department of Cardiology, Kyoto Prefectual University of Medicine
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Ashihara Eishi
Transfusion Medicine and Cell Therapy, Kyoto University Hospital
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Koito Hitoshi
The Cardiovascular Center Kansai Medical University
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Iizuka Masahiko
Department Of Radiology Faculty Of Medicine University Of Tokyo
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Ishii Masao
Department Of Geriatric Medicine Osaka University Graduate School Of Medicine
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Kumagai Hiroo
慶応義塾大学 医学部内科学教室
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Yokoyama Mitsuhiro
()
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Kamihata Hiroshi
Cardiovascular Division, Department of Medicine II, Kansai Medical university
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Imamura Hiroji
The Department of Thoracic and Cardiovascular Surgery, Kansai Medical University
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Kosaki Atsushi
Second Department of Internal Medicine, Division of Cardiology,Kansai Medical university
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Kawashima Seinosuke
Department Of General Medicine Nakatsu Saiseikai Hospital
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Zen Kan
Department of Cardiovascular Medicine, Kyoto Prefectural University of Medicine
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Takamiya Michitaka
Department of Cardiovascular Medicine, Kyoto Prefectural University of Medicine
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Ishikawa Masahiro
Department Of Molecular Cardiovascular Biology And Pharmacology Ehime University Graduate School Of
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Imanishi Masahito
Department Of Internal Medicine
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Zen Kan
Department Of Cardiovascular Medicine Kyoto Prefectural University Of Medicine
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Ura Nobuyuki
大阪大学 医学系研究科老年・腎臓内科学
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Irie Hidekazu
Department Of Cardiology Kouseikai Takeda Hospital
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Irie Hidekazu
Department Of Anatomy And Developmental Biology
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Yamashita Tomoya
Division of Cardiovascular Medicine, Department of Internal Medicine, Kobe University Graduate Schoo
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ISHIDA Masashi
St. Therese Hospital
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Fujiyama Soichiro
Department of Medicine II, Kansai Medical University
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Ishii Masao
Department Of Radiology Faculty Of Medicine University Of Tokyo
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Iizuka Masahiko
The Second Department Of Internal Medicine Faculty Of Medicine University Of Tokyo
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Imai Masaki
Department Of Internal Medicine Keio University School Of Medicine
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Doue Tomoki
Meiji University Of Oriental Medicine
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Miyazaki Mizuo
Department Of Pharmacology Osaka Medical College
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Imamura Hiroji
The Department Of Thoracic And Cardiovascular Surgery Kansai Medical University Hospital
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Tomino Y
Department Of Basic Medical Research And Education Ehime University Graduate School Of Medicine
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Horiuchi Masatsugu
Department of Medical Biochemistry 1, Ehime University School of Medicine
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Sakamoto Kenji
熊本大学 医学教育部循環器病態学
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TAKEDA Kazuo
Kyoto Industrial Health Association
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Koide Shunichi
熊本大学 循環器内科
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TATSUMI Tetsuya
Department of Cardiovascular Medicine, Nantan General Hospital
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Tsutsumi Yoshiaki
国立循環器病センター
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Kishida So
Department of Cardiovascular Medicine, Kyoto Prefectural University School of Medicine
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Iwai Masaru
Department of Molecular Cardiovascular Biology and Pharmacology, Ehime University Graduate School of
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Tatsumi Tetsuya
Department Of Cardiovascular Medicine Nantan General Hospital
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Tsubakihara Yoshiharu
大阪府立病院機構大阪府立急性期総合医療センター 腎臓・高血圧内科
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Tsubakihara Yoshiharu
Department Of Nephrology Osaka Prefectural Hospital
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Tomino Yasuhiko
共立薬科大学 薬物治療学
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Iwai Masaru
Department Of Medical Biochemistry Ehime University School Of Medicine
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Enoki Chiharu
Department of Thoracic Cardiovascular Surgery, Kansai Medical University
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Hattori Reiji
Department of Thoracic and Cardiovascular Surgery, Kansai Medical University
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Nozawa Yoshihisa
Pharmacobioregulation Research Laboratory Hanno Research Center
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Matsumoto Takashi
Department Of Cardiology Kyoto First Red Cross Hospital
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Azuma Akihiro
康生会武田病院 循環器科
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Tatsumi Tetsuya
Department Of Cardiovascular Medicine Kyoto Prefectural University Of Medicine
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Muratani Hiromi
琉球大学 第3内科
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Miyamoto Takashi
Department Of Cardiology Nihon University Surugadai Hospital
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Takeda Mitsuo
Department Of Cardiology Kyoto First Red Cross Hospital
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Matsumoto Takashi
Second Department Of Medicine Kyoto Prefectural University Of Medicine
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Kobayashi Seiichi
神戸大学 院循環呼吸器病態学
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Kishida So
Department Of Cardiovascular Medicine Kyoto Prefectural University School Of Medicine
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Kyoi Shiori
2nd Department Of Internal Medicine Division Of Cardiology Kansai Medical University
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Honsho Shoken
Department Of Cardiovascular Medicine Kyoto Prefectural University Of Medicine
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Hattori Reiji
Department Of Thoracic And Cardiovascular Surgery Kansai Medical University
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Yamada M
Department Of Pharmacology Osaka Medical College
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Adachi Yasushi
Department of Pathology, Kansai Medical University
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Kyoi Shiori
Cardiovascular Center Kansai Medical University
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Sasaki Susumu
Division of Hypertension and Nephrology, Department of Medicine, Kyoto Prefectural University School
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Matsubara Hiroaki
Division of Cardiology and Vascular Regenerative Medicine, Department of Medicine, Kyoto Prefectural
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Shibasaki Yasunobu
Division Of Cardiovascular Medicine Murakami Memorial Hospital Asahi University
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Takeda K
Kyoto Industrial Health Association
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Enoki Chiharu
Department Of Thoracic And Cardiovascular Surgery Kansai Medical University
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SATO Tadashi
Department of Environmental Science, Faculty of Science, Niigata University
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ADACHI Yasushi
First Department of Pathology, Kansai Medical University
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SHIKATA Nobuaki
Department of Pathology II, Kansai Medical University
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TSUBURA Airo
Department of Pathology II, Kansai Medical University
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Takahashi Tomosaburo
Division Of Cardiology Department Of Internal Medicine Miki City Hospital
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Che Jishen
Department of Cardiology, Kyoto Prefectual University of Medicine
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Che Ji-Shen
Department of Cardiolovascular Medicine, Kyoto Prefectural University of Medicine
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Okigaki Misuhiko
Department of Cardiovascular and Regenerative Medicine, Kyoto Prefectual University school of Medici
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Yokoyama Mitsuhiro
Department Of Cardiology Kobe University Graduate School Of Medicine
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Ohtani Hajime
Department of Medicine 2 Kansai Medical University
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Kyoi Shiori
Cardiovascular Center, Kansai Medical University
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Takeda Mitsuo
Department of Cardiology, Kyoto Prefectural University School of Medicine
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Kobara Miyuki
Department of Cardiology, Kyoto Prefectural University School of Medicine
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Honsho Shoken
Department of Experimental Therapeutics, Translational Research Center, Kyoto University Hospital
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Doue Tomoki
Department of Cardiovascular Medicine, Kyoto Prefectural University of Medicine
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Katamura Maki
Department Of Cardiology Kyoto Second Red Cross Hospital
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Fujiwara Shoji
Department Of Thoracic Cardiovasculary Surgery Kansai Medical University
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Iwasaka Toshiji
The Cardiovascular Center Kansai Medical University
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Oka Takanori
Department of Vasuclar surgery, Iwate Medical University
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Shibasaki Yasunobu
Department of Medicine II, Kansai Medical University
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Yokoyama M
Division Of Cardiovascular And Respiratory Medicine Department Of Internal Medicine Kobe University
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Iwai Masaru
Division of Medical Biochemistry and Cardiovascular Biology, Ehime University School of Medicine
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Horiuchi Masatsugu
Division of Medical Biochemistry and Cardiovascular Biology, Ehime University School of Medicine
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Izuoka Toshio
The Second Department Of Internal Medicine Kansai Medical University
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Izuoka Toshio
関西医科大学 2内
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Mani Hiroki
Cardiovascular Division Department Of Medicine Ii Kansai Medical University
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KAMIHATA Hiroshi
The Cardiovascular Center, Kansai Medical University
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Shiomi Keiji
Cardiovascular Center Kansai Medical University
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Kobara Miyuki
Departments Of Cardiovascular Medicine Kyoto Prefectural University School Of Medicine
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Kobara Miyuki
Department Of Cardiovascular Medicine Kyoto Prefectural University School Of Medicine
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Ohtani Hajime
Departemnt Of Applied Chemistry Graduate School Of Engineering Nagoya University
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Kamitani Tadaaki
Department Of Cardiology Matsushita Memorial Hosipital
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Kamide Takashi
Department Of Cardiovascular Medicine Kyoto Prefectural University Of Medicine
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Adachi Yasushi
Department Of Pathology Kansai Medical School
著作論文
- OJ-133 Calcium-Dependent Tyrosine-Kinase PYK2 Plays Crucial Role in Angiotensin II- but Not Norepineprine-Mediated Activation of Rac/Superoxide-Pathway that Differentially Regulates Blood Pressure(OJ23,Hypertension, Basic (H),Oral Presentation (Japanese),
- OJ-058 Bone Marrow AT1 Receptor Augments Neointima Formation by Promoting Mobilization of Smooth Muscle Progenitor Cells in a Platelet-Derived SDF-1α-Dependent Manner(OJ10,Atherosclerosis, Basic (IHD),Oral Presentation (Japanese),The 73rd Annual Scientifi
- OE-232 Bone Marrow Angiotensin AT1 Receptor Regulates Differentiation of Monocyte/Macrophage-Lineage Progenitors from Hematopoietic Stem Cells(OE40,Atherosclerosis, Basic 2 (IHD),Oral Presentation (English),The 73rd Annual Scientific Meeting of The Japane
- OE-055 Ca2+/Redox-Sensitive Tyrosine Kinase PYK2 Promotes Atherogenesis through OxLDL/ROS/p21-Dependent Premature Senescence and Cytokine Induction in Endothelium(OE10,Atherosclerosis, Basic 1 (IHD),Oral Presentation (English),The 73rd Annual Scientific M
- PJ-616 Mild Renal Dysfunction Accelerated Atherosclerotic Development by Augmenting Mobilization of Bone Marrow Monocyte-lineage progenitors from Bone Marrow via CCR2-Mediated Signals(Atherosclerosis, basic(08)(IHD),Poster Session(Japanese),The 72nd Annua
- PJ-540 Calcium-dependent-tyrosine-kinase PYK2 Plays Crucial Roles in Angiotensin-II- But Not Norepineprine- Mediated Activation of Rac/ Superoxide Pathway That Differentially Regulates Blood-Pressure(Molecular biology, vascular(02)(IHD),Poster Session(Jap
- PJ-376 Bone Marrow AT1 and AT2 Differentially Modulate Vascular Repair by Regulating Mobilization of Bone Marrow-derived c-Kit^-Sca-1^+Lin^- Progenitors via SDF-1 α/CXCR4 Axis(Restenosis basic/clinical(04)(IHD),Poster Session(Japanese),The 72nd Annual Sci
- OE-416 Novel Action of Angiotensin AT1 Receptor on Bone Marrow Stem Cells, Promotion of Monocyte/Macrophage Lineage Differentiation from Hematopoietic Stem Cells.(Atherosclerosis, clinical(02)(IHD),Oral Presentation(English),The 72nd Annual Scientific Mee
- FRS-030 Calclum/Redox-dependent Tyrosine Kinase PYK2 Promotes Atherogenesis by Inducing Monocyte/Macrophage-Derived TNF-alpha and MCP-1 Unmasked by Analysis of PYK2/ApoE Double Deficient Mice(Novel Mechanisms in Atherosclerosis (IHD),Featured Research Ses
- PE-039 Ca2^+-dependent Tyrosine Kinase PYK2 Promotes Atherogenesis by Inducing Monocyte/Macrophage-Derived IL-1 β and MCP-1(Atherosclerosis, basic-5, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- PJ-472 Ca2+dependent Tyrosine-kinase Pyk2 Plays Critical Role in Atherogenesis by Inducing Macrophage-derived IL-1β and MCP-1 Unmasked by Analysis of PYK2/ApoE-deficient Mice(Atherosclerosis, basic-5 (H) PJ80,Poster Session (Japanese),The 70th Anniversary
- PJ-275 Overexpression of Tie2-promoted Activated Fibroblast Growth Factor Receptor-2 in Endothelial Cells Enhances Angiogenesis via Akt Signaling in Mice Hindlimb Ischemia(Regeneration (angionenesis/myocardial regeneration)-8 (M) PJ47,Poster Session (Japa
- PJ-033 Central Role of Calcium-Dependent Tyrosine Kinase PYK2 in eNOS-Mediated Angiogenesis Unmasked by PYK2 Knockout Mice(Endothelium-5 (H) PJ6,Poster Session (Japanese),The 70th Anniversary Annual Scientific Meeting of the Japanese Circulation Society)
- PJ-131 Bone Marrow AT1 and AT2 Modulate Vascular Repair by Regulating Mobilization and Differentiation of Vascular Progenitor Cells and Macrophage Activation(Restenosis basic/clinical-3, The 71st Annual Scientific Meeting of the Japanese Circulation Socie
- PJ-072 Angiotensin II Receptor Blocker Stabilizes Vulnerable Plaque and Reduces Susceptibility of Plaque Rupture in Apolipoprotein E Deficient Mice(Atherosclerosis, basic-8, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- PJ-068 A Wire-Induced Arterial Injury Accelerated the Destabilization of Remote Established Atherosclerotic Plaques in ApoE-deficient Mice(Atherosclerosis, basic-8, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- PE-034 Bone Marrow AT1 Accelerated the Development of Atherosclerosis by Regulating Differentiation of Macrophage Progenitors and Macrophage Functions(Atherosclerosis, basic-4, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- OJ-026 Angiotensin II Type2 Receptor in Bone Marrow-Derived Cells Inhibits Neointimal Hyperplasia by Counteracting Type1 Receptor Function in Mouse Wire-Injured Artery(Restenosis, basic/clinical-1 (IHD) OJ5,Oral Presentation (Japanese),The 70th Anniversar
- OE-201 Erythropoietin-Mediated Mobilization of Endothelial Progenitors Enhances Reendothelialization via Akt-eNOS activation and Prevents Neointimal Hyperplasia of Injured Arteries(Endothelium-1 (H) OE34,Oral Presentation (English),The 70th Anniversary An
- FRS-002 Angiotensin II Type 1 Receptor in Bone Marrow-Derived Stem Cells Plays a Crucial Role in Atherosclerosis Development(Frontier of Atherosclerosis Research (H) FRS1,Featured Research Session,The 70th Anniversary Annual Scientific Meeting of the Japa
- Erythropoietin Accelerates Regeneration of Endothelium and Prevents Neointimal Hyperplasia after Vascular Injury by Mobilizing Endothelial Progenitor Cells(Endothelium/NO 4 (H), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- Angiogenic Cell Therapy to the Failing Heart Using Therapeutic Ultrasound with Contrast Microbubbles (Cardiac Hypertrophy/Cardiomyopathy 2 (M), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- Enhancement of Ischemia-Induced Angiogenesis by eNOS Overexpression
- Augmented Angiogenesis in Ischemic Limbs in Transgenic Mice Overexpressing eNOS in Endothelium
- Primary Pulmonary Artery Sarcoma
- PE-461 Interleukin-1 &beta Released from Bone Marrow-derived Cells Contributes to Vascular Repair Rather than Inflammatory Cytokines from Vascular Resident Cells(Growth factor/Cytokine-2 (H) PE77,Poster Session (English),The 70th Anniversary Annual Scient
- PE-160 Vascular Overexpression of Angiotensin II Type 2 Receptor Attenuates Atherosclerosis in Apolipoprotein E-deficient Mice(Atherosclerosis, basic-4 (H) PE27,Poster Session (English),The 70th Anniversary Annual Scientific Meeting of the Japanese Circul
- OE-273 Involvement of Superoxide in Angiotensin II-induced Hypertension is Unmasked by Development of Nox1-deficient Mice(Hypertension, basic-1 (H) OE46,Oral Presentation (English),The 70th Anniversary Annual Scientific Meeting of the Japanese Circulation
- OE-035 Deficiency of Redox-Sensitive Tyrosine Kinase Pyk2 Reduced Myocardial Infarction Size by Regulating ROS/VEGF- and Cytokine-Mediated Inflammatory Reactions and Apoptosis(OE06,Myocardial Ischemia-reperfusion (Basic) (IHD),Oral Presentation (English),
- OE-269 Calcium and Redox Sensitive Tyrosine Kinase Pyk2 Aggravates Myocardial Ischemia by Promoting Inflammatory Cytokine Synthesis and Hypoxia-Induced Apoptosis(Acute myocardial infarction, basic(01)(IHD),Oral Presentation(English),The 72nd Annual Scient
- OJ-065 Central Role of Calcium-Dependent Tyrosine Kinase Pyk2 in eNOS-Mediated Angiogenesis Unmasked by Pyk2 Knockout Mice(Endothelium-2, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- OJ-043 Calcium-Dependent Tyrosine Kinase Pyk2 Plays Crucial Role in Angiotensin II- But Not Norepineprine-Mediated Activation of Rac/Superoxide Pathway(Hypertension, basic-2, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- Administration of Mesenchymal Stem Cells-Derived Endothelial Cells Aggravated Luminal Narrowing after Arterial Injury in Mice(Restenosis after Angioplasty, Basic/Clinical 2 (IHD), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- OJ-198 Sustained Elevation of Intracellular Calcium Concentration due to Sustained TRPC1 Expression Induced Apoptosis of Aortic Endothelial Cells in Klotho Mice(Atherosclerosis, basic-3, The 71st Annual Scientific Meeting of the Japanese Circulation Socie
- Loss of Intracellular Dystrophin : A Potential Mechanism for Myocardial Reperfusion Injury
- Ischemic Preconditioning Preserves Membrane Dystrophin : A Novel Mechanism of Cardieoprotection against Reperfusion Injury
- Differential Effect of P38MAP Kinase Activation on Myocardial Stunning and Necrosis
- Bypass Graft Material and Myocardial Protective Procedure in Combined Coronary Artery Bypass Grafting and Valve Surgery
- Surgical Treatment for a Supra Sinotubular Junctional Saccular Aneurysm Associated With Aortic Regurgitation
- Experimental Study of Pulmonary Artery Infusion With Cisplatin in a Solitary Pulmonary Tumor Model using a Rat Colorectal Adenocarcinoma Cell Line
- Freehand Cryopreserved Mitral Valve Allograft With Flexible Ring in the Pig
- AngiotensinII-induced Hypertension is Attenuated in Nox1-deficient Mice(Endothelial Function (H), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- G-CSF Treatment Inhibits Neointimal Hyperplasia Associated with Endothelial Progenitor Cell Mobilization and Acceleration of Reendothelialization in Catorid Artery Injuty Model(Restenosis after Angioplasty, Basic/Clinical 5 (IHD), The 69th Annual Scientif
- OJ-315 Cardioprotective Action of Interleukin-1β in Adaptation to Cardiac Pressure-overload Sress by Activation of IGF-1/PI3K/Akt Signaling Pathway(Growth factor/Cytokine-1 (H) OJ53,Oral Presentation (Japanese),The 70th Anniversary Annual Scientific Meeti
- Critical Role of IL-1 beta for Adaptation to Cardiac Pressure Overload Stress, Revealed by Analysis of its Null Mice (Heart Failure, Basic 6 (M), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- Efficacy of biventricular pacing for dialysis-related hypotension due to idiopathic dilated cardiomyopathy
- Augmentation of Pulse Wave Velocity Precedes Vascular Structural Changes of the Aorta in Rats Treated with N^ω-Nitro-L-Arginine Methyl Ester
- Ultrasound Evaluation of Valsartan Therapy for Renal Cortical Perfusion
- OJ-110 The Efficacy of Educational Admission Program for Chronic Kidney Disease(Kidney/Renal circulation-1 (H) OJ19,Oral Presentation (Japanese),The 70th Anniversary Annual Scientific Meeting of the Japanese Circulation Society)
- Critical Role of Tyrosine Kinase PYK2 in eNOS Activation Revealed by Analysis of PYK2 Knockout Mice(Endothelium/NO 5 (H), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- Mechanism for IL-1β-mediated Neovascularization Unmasked by IL-1βKnock-out Mice(Molecular Biology, Vascular 1 (H), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- OJ-417 Tyrosine Kinase PYK2 activates eNOS and subsequently regulates Vascular Tonus and Angiogenesis, revealed by its Knock-out Mice(Endothelium/NO 5 (H) : OJ51)(Oral Presentation (Japanese))
- OE-011 Mechanism for IL-1β-mediated Neovascularization Unmasked by IL-1β Knock-out Mice(Vasoactive Compound/Growth Factor/Cytokine 1 (H) : OE2)(Oral Presentation (English))
- Free Cholesterol induce Endothelial Cell Apoptosis through Store-operated Calcium Channel Mediated Cytoplasmic Calcium Mobilization(Atherosclerosis, Basic 3 (IHD), The 69th Annual Scientific Meeting of the Japanese Circulation Society)
- Critical Functional Role of IL-1β in Expression and Function of VEGF Revealed by Analysis of IL-1β-/-Mice
- eNOS Activation and Its Vascular Functions Critically Requires the Presence of Tyrosine Kinase PYK2
- G-CSF Treatment Dose-dependently Induces Collateral Blood Flow Associated with Endothelial Progenitor Cell Mobilization and Neocapillary Formation in Hindlimb Ischemia(Peripheral Circulation/Vascular Disease 3 (H), The 69th Annual Scientific Meeting of th
- Safety and Availability of Doxazosin in Treating Hypertensive Patients with Chronic Renal Failure
- Reliability and efficacy of a monitoring system for an implanted pulse generator
- Strategy for Avoiding Cerebral Complications during Surgery for Arch and Distal Arch Aneurysm