Lee Richard | Cardiovascular Division Brigham And Women's Hospital Harvard Medical School
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概要
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- 同名の論文著者
- Cardiovascular Division Brigham And Women's Hospital Harvard Medical Schoolの論文著者
関連著者
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Lee Richard
Cardiovascular Division Brigham And Women's Hospital Harvard Medical School
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Lee Richard
Cardiovascular Division, Brigham and Women's Hospital, Harvard Medical School
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Sanada Shoji
Cardiovascular Division Brigham And Women's Hospital Harvard Medical School
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Kitakaze Masafumi
Cardiovascular Div. Of Medicine National Cardiovascular Center
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Sakamoto Hironosuke
Department of Nursing, Faculty of Nursing, Takasaki University of Health and Welfare
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Sakamoto Hironosuke
Department Of General Medicine Gunma University School Of Medicine
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Kurabayashi Masahiko
Second Department of Internal Medicine, Gunma University School of Medicine
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Hakuno Daihiko
Cardiology Division, Department of Internal Medicine, Keio University School of Medicine
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Hakuno Daihiko
Cardiopulmonary Division Department Of Internal Medicine Keio University School Of Medicine
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Kitakaze Masafumi
Cardiovascular Division National Cardiovascular Center
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Kurabayashi Masahiko
Second Department Of Internal Medicine Gunma University School Of Medicine
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Hakuno Daihiko
Cardiology Division Department Of Internal Medicine Keio University School Of Medicine
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Lee Richard
Cardiovascular Division Brigham Women's Hospital Harvard Medical School
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KITAKAZE Masafumi
Cardiovascular Division, National Cardiovascular Center
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Lee Richard
Cardiovascular Division, Brigham and Women's Hospital, Harvard Medical School
著作論文
- Mechanical strain induces scavenger receptor expression in human primary and THP-1 monocyte/macrophages : implication in atherosclerotic lesion formation in hypertensive patients
- 3 ST2 is an Emerging Functional Biomarker Predicting Mortality after Acute Heart Events and Comprising Stress-induced Cardioprotective Signaling System with IL-33(Biomarkers, Genetic Polymorphism, and Risk Estimation,Symposium 1 (SY-01) (H),The 73rd Annua
- OE-311 Interleukin-33/ST2 is a Critical Cardioprotective Signaling System Induced by Mechanical Overload(Heart failure, basic-1, The 71st Annual Scientific Meeting of the Japanese Circulation Society)
- IS038 Keynote Lecture : Using Genomic Technology to Identify New Targets in Caediovascular Disease