昼夜节律
生物
神经科学
免疫染色
神经活动
生物钟
相位响应曲线
地图集(解剖学)
哺乳动物大脑
啮齿动物
运动前神经元活动
句号(音乐)
神经网络
大脑定位
细菌昼夜节律
脑图谱
视交叉上核
光对昼夜节律的影响
生物神经网络
大脑活动与冥想
节奏
中枢神经系统
作者
Katsunari Yamashita,Fukuaki L. Kinoshita,Shota Y Yoshida,Katsuhiko Matsumoto,Tomoki T Mitani,Hiroshi Fujishima,Yoichi Minami,Eiichi Morii,Rikuhiro G Yamada,Seiji Okada,Hiroki R. UEDA
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-11-13
卷期号:: eaea3381-eaea3381
标识
DOI:10.1126/science.aea3381
摘要
The mammalian brain comprises numerous anatomical regions with distinct functions despite their extensive connectivity. However, how spontaneous neural activity is coordinated across regions over the circadian cycle remains elusive. We employed tissue clearing and whole-brain c-Fos immunostaining on 144 mouse brains collected over two days under constant darkness. Time-series analysis revealed brain-wide circadian rhythmicity at single-cell resolution, with 79% of the 642 anatomically defined regions oscillating in diverse circadian phases that delineate functional specializations. Voxel-wise analyses further highlighted distinct subregions, suggesting intricate spatiotemporal coordination within regions. Additionally, brain circadian time can be accurately inferred from global c-Fos patterns using omics-derived prediction methods. This whole-brain circadian atlas enhances our understanding of neural coordination and provides a resource for integrating time-of-day information into functional and pharmacological research.
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