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5篇 您的检索式:作者名="Erquan"
    题名 作者 年代 出处 被引量
1Formation and involvement of radicals in oxygen delignification studied by the autoxidation of lignin and carbohydrate model compounds显示文摘Torbj(o)rn Reitberger Yang Erquan Yoon Byung Ho 0,,04:1
2The Reactions of Hydroxyl Radicals with Aromatic Rings in Lignins,Studied with Creosol 4-Methylveratrol显示文摘Josef Gierer Erquan Yang 1992Holzforschung1992,46,6:1
3Formation and involvement of radicals in oxygen delignification studied by the autoxidation of lignin and carbohydrate model compounds显示文摘Gierer Josef Reitberger Torbjorn Yang Erquan 2001Journal of Wood Chemistry and Technology2001,21,4:1
4Pretreatment of dry-spun acrylic fiber manufacturing wastewater by Fenton process: optimization, kinetics and mechanisms显示文摘Jian Wei Yonghui Song Xiang Tu Le Zhao Erquan Zhi 2012Chemical Engineering Journal2012,,:1
5Integrated neural tracing and in-situ barcoded sequencing reveals the logic of SCN efferent circuits in regulating circadian behaviors显示文摘The circadian clock coordinates rhythms in numerous physiological processes to maintain organismal homeostasis. Since the suprachiasmatic nucleus(SCN) is widely accepted as the circadian pacemaker, it is critical to understand the neural mechanisms by which rhythmic information is transferred from the SCN to peripheral clocks. Here, we present the first comprehensive map of SCN efferent connections and suggest a molecular logic underlying these projections. The SCN projects broadly to most major regions of the brain, rather than solely to the hypothalamus and thalamus. The efferent projections from different subtypes of SCN neurons vary in distance and intensity, and blocking synaptic transmission of these circuits affects circadian rhythms in locomotion and feeding to different extents. We also developed a barcoding system to integrate retrograde tracing with in-situ sequencing, allowing us to link circuit anatomy and spatial patterns of gene expression. Analyses using this system revealed that brain regions functioning downstream of the SCN receive input from multiple neuropeptidergic cell types within the SCN, and that individual SCN neurons generally project to a single downstream brain region.This map of SCN efferent connections provides a critical foundation for future investigations into the neural circuits underlying SCNmediated rhythms in physiology. Further, our new barcoded tracing method provides a tool for revealing the molecular logic of neuronal circuits within heterogeneous brain regions.Meimei Liao Xinwei Gao Chen Chen Qi Li Qingchun Guo He Huang Erquan Zhang Dapeng Ju 2024Science China(Life Sciences)2024,67,3:0
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