KUMAMOTO Eiichi | Division of Neurophysiology, Departments of Anatomy and Physiology, Faculty of Medicine, Saga Univer
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概要
- 同名の論文著者
- Division of Neurophysiology, Departments of Anatomy and Physiology, Faculty of Medicine, Saga Univerの論文著者
関連著者
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Fujita Tsugumi
Department Of Physiology Faculty Of Medicine Saga University
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KUMAMOTO Eiichi
Department of Physiology, Faculty of Medicine, Saga University
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Kumamoto Eiichi
Department Of Physiology Faculty Of Medicine Saga University
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FUJITA Tsugumi
Division of Neurophysiology, Departments of Anatomy and Physiology, Faculty of Medicine, Saga Univer
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NAKATSUKA Terumasa
Division of Neurophysiology, Departments of Anatomy and Physiology, Faculty of Medicine, Saga Univer
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KUMAMOTO Eiichi
Division of Neurophysiology, Departments of Anatomy and Physiology, Faculty of Medicine, Saga Univer
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Nakatsuka Terumasa
Department Of Physiology Faculty Of Medicine Saga University
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Koga Akiko
Division Of Neurophysiology Department Of Physiology Faculty Of Medicine Saga University
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Liu Tao
Dept Physiol Saga Medical School
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LIU Tao
Division of Neurophysiology, Department of Physiology, Faculty of Medicine, Saga University
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KAWASAKI Yasuhiko
Division of Neurophysiology, Departments of Anatomy and Physiology, Faculty of Medicine, Saga Univer
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Kawasaki Yasuhiko
Division Of Neurophysiology Departments Of Anatomy And Physiology Faculty Of Medicine Saga Universit
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Tomohiro Daisuke
Dept Physiol Saga Medical School
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Takeda Daisuke
Department Of Electrical Engineering Kyoto University
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Yue Hai-yuan
Dept. Physiol. Fac. Med. Saga Univ.
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YUE Hai-Yuan
Division of Neurophysiology, Departments of Anatomy and Physiology, Faculty of Medicine, Saga Univer
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KOGA Akiko
Division of Neurophysiology, Departments of Anatomy and Physiology, Faculty of Medicine, Saga Univer
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SONOBE Hideki
Department of Orthopedic Surgery, Wakayama Medical University
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Sonobe Hideki
Department Of Orthopedic Surgery Wakayama Medical University
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Takeda Daisuke
Department Of Applied Chemistry Faculty Of Engineering Osaka University
著作論文
- Bee Venom Peptide Melittin Enhances Spontaneous Glutamatergic Excitatory Transmission in the Rat Spinal Dorsal Horn
- Phospholipase A_2 Activation by Melittin Enhances Glycinergic Spontaneous Inhibitory Transmission in Adult Rat Substantia Gelatinosa Neurons
- Proteinase-Activated Receptor-1 Agonist Peptides Presynaptically Enhance Nociceptive Transmission in the Adult Rat Spinal Cord
- Role of Proteinase-Activated Receptor Agonist Peptides in Regulating Nociceptive Transmission to Substantia Gelatinosa Neurons in the Adult Rat Spinal Cord
- Enhancement by Bee Venom Melittin of Spontaneous GABAergic and Glycinergic Inhibitory Transmission in Substantia Gelatinosa Neurons of the Adult Rat Spinal Cord
- Substance P Actions on Synaptic Transmission in the Rat Spinal Dorsal Horn
- Modulation by Endomorphins of Nociceptive Transmission in Rat Spinal Dorsal Horn Neurons