Nose Kazuhiro | Department of Urology, Kinki University School of Medicine
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概要
関連著者
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Nose Kazuhiro
Department of Urology, Kinki University School of Medicine
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Nose Kazuhiro
Department Of Urology Kinki University Sakai Hospital
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Uemura Hirotsugu
Departments Of Urology Kinki University School Of Medicine
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Uemura Hirotsugu
Department Of Urology Kinki University School Of Medicine
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Kurita Takashi
Department of Cardiovascular Medicine, National Cardiovascular Center
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Nishioka Tsukasa
Department Of Urology Sakai Hospital Kinki University School Of Medicine
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MATSUURA Takeshi
Department of Urology, Kinki University School of Medicine
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Hayashi Taiji
Department Of Urology Kaizuka City Hospital
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Hayashi Taiji
Department Of Clinical Pharmacology And Toxicology Faculty Of Pharmceutical Sciences Health Sciences
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Matsuura Takeshi
Department Of Urology Kinki University School Of Medicine
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Matsuura Takeshi
Department Of Applied Chemistry Faculty Of Science And Engineering Kinki University
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Kurita Takashi
Department Of Cardiovascular Medicine National Cerebral And Cardiovascular Research Center
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Antonio De
Department Of Urology Kinki University School Of Medicine
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SAITOU Yoshitaka
Department of Urology, Kinki University School of Medicine
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ISHII Tokumi
Department of Urology, Kinki University School of Medicine
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Ishii Tokumi
Department Of Urology Kinki University School Of Medicine
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Hayashi Taiji
Department Of Urology Kinki University School Of Medicine
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Nose Kazuhiro
Department Of Urology Kinki University School Of Medicine
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Saitou Yoshitaka
Department Of Urology Kinki University School Of Medicine
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Nishioka Tsukasa
Department Of Urology Kinki University Sakai Hospital
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Kurita Takashi
Department Of Cardiovascular Dynamics National Cerebral And Cardiovascular Center Research Institute
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Uemura Hirotsugu
Department Of Urology Kinki University
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Kurita Takashi
Department of Urology, Kinki University School of Medicine
著作論文
- The relationship between Tacrolimus-induced nephrotoxicity and Endothelin 1 on renal ischemic reperfusion injury model in spontaneously hypertensive rats
- Carvedilol protects tubular epithelial cells from ischemia-reperfusion injury by inhibiting oxidative stress