2023 - 2025 Gliosomnia and immunity: decoding brain-immune interactions in sleep
2021 - 2025 中脳辺縁系グリア・神経相互作用による眠気のメカニズムの解明
2016 - 2021 光を用いた睡眠の機能と制御機構の統合的解析
2017 - 2021 動機づけ行動による徐波睡眠制御における側坐核の役割
2018 - 2020 パーキンソン病における睡眠障害のメカニズム: 神経回路の観点から
2019 - 2020 レム睡眠と食欲の意志動力学
2016 - 2019 自由行動マウスのアデノシンA2A受容体を利用した光薬理学
2017 - 2019 レム睡眠と食欲の意志動力学
2018 - 2019 低体温誘導の記憶へのリスクと可塑性
2016 - 2018 低体温誘導の記憶へのリスクと可塑性
2014 - 2017 睡眠が認知機能の柔軟性および情動の調節に与える影響の解明
2014 - 2016 代謝疾患メカニズム解明に向けた、慢性的睡眠不足モデルマウスの開発
2013 - 2016 遺伝子操作と結晶構造解析による主要小胞体分子シャペロンER-60の機能解析
2012 - 2015 睡眠覚醒における線条体淡蒼球系の役割
2009 - 2011 局所的RNA干渉法を用いた睡眠促進物質アデノシンの作用部位の同定
全件表示
論文 (107件):
Hasegawa, Emi, Lazarus, Michael. Mental health: The REM sleep paradox in depression. CURRENT BIOLOGY. 2024. 34. 15
Asako Futagawa, Yousuke Tsuneoka, Michael Lazarus, Yo Oishi. Comprehensive mapping of histamine H1 receptor mRNA in the mouse brain. The Journal of comparative neurology. 2024. 532. 5. e25622
Koustav Roy, Xuzhao Zhou, Rintaro Otani, Ping-Chuan Yuan, Shuji Ioka, Kaspar E. Vogt, Tamae Kondo, Nouran H. T. Farag, Haruto Ijiri, Zhaofa Wu, et al. Optochemical control of slow-wave sleep in the nucleus accumbens of male mice by a photoactivatable allosteric modulator of adenosine A2A receptors. Nature Communications. 2024. 15. 1
Li, Ya-Dong, Luo, Yan-Jia, Su, Wei-Kun, Ge, Jing, Crowther, Andrew, Chen, Ze-Ka, Wang, Lu, Lazarus, Michael, Liu, Zi-Long, Qu, Wei-Min, et al. Anterior cingulate cortex projections to the dorsal medial striatum underlie insomnia associated with chronic pain. NEURON. 2024. 112. 8
Masami Arai, Etsuko Suzuki, Satoshi Kitamura, Momoyo Otaki, Kaori Kanai, Miwako Yamasaki, Masahiko Watanabe, Yuki Kambe, Koshi Murata, Yuuki Takada, et al. Enhancement of haloperidol-induced catalepsy by GPR143, an L-DOPA receptor, in striatal cholinergic interneurons. The Journal of neuroscience : the official journal of the Society for Neuroscience. 2024
Michael Lazarus, Yo Oishi, Theresa E. Bjorness, Robert W. Greene. Gating and the need for sleep: Dissociable effects of adenosine a1and a2areceptors. Frontiers in Neuroscience. 2019. 13
The Teleological Mystery of Sleep - Glioneuronal Mechanisms Integrating Sleep Homeostasis and Motivation
(CNS 2024- The 17th Annual Meeting of the Chinese Neuroscience Society)
Why are we sleepy when we are bored? Molecular links between sleep and motivation
(第38回 日本大脳基底核研究会)
The teleological mystery of sleep ⎯ Glioneuronal mechanisms integrating sleep homeostasis and motivation
(Glia Decoding International Symposium)
The neuroglial mechanisms underlying the gating of sleep homeostasis by motivation
(第47回日本神経科学大会)