Rchr
J-GLOBAL ID:200901066461385086   Update date: Apr. 02, 2024

Sano Hiromi

サノ ヒロミ | Sano Hiromi
Affiliation and department:
Job title: Associate Professor
Research field  (4): Molecular biology ,  Clinical pharmacy ,  Physiology ,  Neuroscience - general
Research keywords  (4): 包括脳ネットワーク ,  運動 ,  大脳基底核 ,  basal-ganglia
Research theme for competitive and other funds  (7):
  • 2021 - 2024 Signal transduction and motor control regulated through by direct and indirect pathways in the basal ganglia to the thalamus
  • 2021 - 2024 大脳基底核異常による不随意運動モデルの作成と遺伝子治療開発
  • 2018 - 2021 Elucidation of the mechanism of dystonia development using animal model and attempts to restore the symptoms
  • 2015 - 2018 Unvealing a functional implication of beta oscillations in the motor cortex
  • 2015 - 2018 Analysis on neuronal circuits responsible for involuntary movements
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Papers (34):
  • Yuri Miyazaki, Takeshi Otsuka, Yoko Yamagata, Toshihiro Endo, Makoto Sanbo, Hiromi Sano, Kenta Kobayashi, Hiroki Inahashi, Hans-Christian Kornau, Dietmar Schmitz, et al. Oligodendrocyte-derived LGI3 and its receptor ADAM23 organize juxtaparanodal Kv1 channel clustering for short-term synaptic plasticity. Cell Reports. 2024. 113634-113634
  • Atsushi Nambu, Satomi Chiken, Hiromi Sano, Nobuhiko Hatanaka, José A Obeso. Dynamic Activity Model of Movement Disorders: The Fundamental Role of the Hyperdirect Pathway. Movement disorders : official journal of the Movement Disorder Society. 2023. 38. 12. 2145-2150
  • Yoshifumi Abe, Sho Yagishita, Hiromi Sano, Yuki Sugiura, Masanori Dantsuji, Toru Suzuki, Ayako Mochizuki, Daisuke Yoshimaru, Junichi Hata, Mami Matsumoto, et al. Shared GABA Transmission Pathology in Dopamine Agonist- and Antagonist-induced Dyskinesia. Cell reports. Medicine. 2023. 101208-101208
  • Hiromi Sano, Atsushi Nambu. Behavioral effects of zonisamide on L-DOPA-induced dyskinesia in Parkinson's disease model mice. Frontiers in aging neuroscience. 2023. 15. 1221341-1221341
  • Daisuke Tsuboi, Takeshi Otsuka, Takushi Shimomura, Md Omar Faruk, Yukie Yamahashi, Mutsuki Amano, Yasuhiro Funahashi, Keisuke Kuroda, Tomoki Nishioka, Kenta Kobayashi, et al. Dopamine drives neuronal excitability via KCNQ channel phosphorylation for reward behavior. Cell Reports. 2022. 40. 10. 111309-111309
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MISC (13):
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Association Membership(s) (4):
PHYSIOLOGICAL SOCIETY OF JAPAN ,  Society for Neuroscience ,  日本分子生物学会 ,  日本神経科学会
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