Research theme for competitive and other funds (13):
2022 - 2025 概日時計の転写フィードバック中枢振動体を補償するメカニズムの解明
2020 - 2023 体内における細胞組織精密操作技術の開発
2019 - 2022 The role of cell-autonomous circadian oscillation of clock gene transcription in circadian rhythm generation
2016 - 2020 Global scale measurement and analysis of animal behavior with environmental factors through the internet
2017 - 2019 Investigation on mechanisms of feeding-induced circadian phase adjustment
2016 - 2018 Functional assessment of the circadian clock of patients with neurodegenerative disorders based on clock gene expression
2014 - 2017 A Novel Therapy with Bright Light System in Parkinson's Disease
2014 - 2016 Development of a detection method for circadian rhythm sleep disorders based on clock gene expression
2012 - 2015 The role of clock gene in cardiovascular disease
2011 - 2012 概日時計構成因子Periodの機能解析
2007 - 2008 Analyses of molecular mechanisms underlying circadian rhythm generation and synchronization by rapid and efficient gene transduction in vivo
2005 - 2006 Involvement of WSX-1 in atherosclerosis
2005 - 2006 The role of EET in cardiovascular disease.
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Papers (55):
Junko Kawabe, Kohhei Kajihara, Yohei Matsuyama, Yukiya Mori, Teruki Hamano, Mai Mimaki, Yukari Kitamura, Ritsuko Matsumura, Makoto Matsuyama, Masahiro Sato, et al. In vivo functional significance of direct physical interaction between Period and Cryptochrome in mammalian circadian rhythm generation. PNAS Nexus. 2024
Yoshiki Miyawaki, Atsuhiro Nishida, Keisuke Fukushima, Aoi Matsumoto, Teruki Hamano, Yukiya Mori, Mamoru Nagano, Isao T. Tokuda, Yasufumi Shigeyoshi, Koichi Node, et al. Chronic circadian misalignment is a risk factor for hair growth impairment. iScience. 2024. 27. 10. 110974-110974
Ritsuko Matsumura, Koichi Node, Makoto Akashi. Detection of endogenous circadian rhythms of clock gene mRNA expression in mouse lung tissue using slice cultures. STAR Protocols. 2023. 4. 2. 102280-102280