Research field (4):
Animals: biochemistry, physiology, behavioral science
, Neuroscience - general
, Basic brain sciences
, Developmental biology
Research keywords (10):
ゲノムワイド相関解析
, 光遺伝学(光計測)
, 光遺伝学(光操作)
, in vivo ホールセルパッチクランプ法
, 電気生理学
, カルシウムイメージング
, 痛覚受容
, 樹状突起突起形成
, 7回膜貫通型カドヘリン
, 平面内細胞極性
Research theme for competitive and other funds (6):
2021 - 2024 Analysis of neurophysiological mechanisms that regulate escape behavior in an environment-dependent manner
2012 - 2015 Molecular analyses of crossing-proof mechanism of dendrites
2010 - 2015 Controls of dendritic arbor geometry and processing of inputs
2012 - 2014 樹状突起の異常交差に起因する“てんかん様症状”の発症機構の追究
2004 - 2006 7回膜貫通型カドヘリンの下流シグナル因子の探索とその機能解析
1997 - 2000 7回膜貫通型カドヘリン様分子:神経系での細胞間相互認識における役割の解析
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Papers (34):
Misato Kurio, Yuma Tsukasa, Tadashi Uemura, Tadao Usui. Refinement of a technique for collecting and evaluating the osmolality of haemolymph from Drosophila larvae. Journal of Experimental Biology. 2024
Tadao Usui. GPI-anchor protein that modulates nociceptive escape behaviors in Drosophila. Bioscience & Industry. 2024. 82. 1. 48-49
Kai Li, Yuma Tsukasa, Misato Kurio, Kaho Maeta, Akimitsu Tsumadori, Shumpei Baba, Risa Nishimura, Akira Murakami, Koun Onodera, Takako Morimoto, et al. Belly roll, a GPI-anchored Ly6 protein, regulates Drosophila melanogaster escape behaviors by modulating the excitability of nociceptive peptidergic interneurons. eLife. 2023. 12
Elucidation of the internal state-dependent modulation of the nociceptive escape behavior
(The International Symposium on Development and Plasticity of Neural Systems 2022)
Elucidation of the internal state-dependent modulation of the nociceptive escape behavior
(Neurogenetics of Drosophila larva 2021 2021)
Genome-Wide Analysis towards Physiology of Thermal nociception
(Biothermology Workshop 2018 2018)
Belly roll, a member of Ly6/α-Neurotoxin/uPAR proteins, regulates the activity of nociceptive circuitry that evokes avoidance behavior
(Behavioral Neurogenetics of Drosophila Larva 2018)
Information processing mediated by firing rate fluctuations in Drosophila sensory system
(The 41st Annual Meeting of the Japan Neuroscience Society 2018)