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Wang Jinhui
wangjinhui@ucas.ac.cn
Chinese, English
Beijing
University of Chinese Academy of Sciences
Life Sciences
  • 1989-08--1992-07 PhD: Shanghai Institute of Physiology, Chinese Academy of Sciences
  • 2003-12~2025-09 - Institute of Biophysics, Chinese Academy of Sciences; University of Chinese Academy of Sciences - Researcher; Distinguished Professor, Doctoral Supervisor
  • 1999-08~2004-08 - University of Kansas - Assistant Professor (tenure-track), Doctoral Supervisor
  • 1994-05~1999-07 - University of Texas, Houston Medical School - Research Scientist
  • National Outstanding Youth Fund (2003): National Level
  • Chinese Academy of Sciences BR Program (2003): Ministerial Level
Neuroscience
Physiology
  • Associative memory neurons of encoding multi-modal signals are recruited by neuroligin-3 mediated new synapse formation., Wang Jinhui, 2023
  • The interconnection and function of associative memory neurons are upregulated for memory strengthening., Wang Jinhui, 2023
  • Molecular changes in nucleus accumbens due to amelioration of depressive-like behavior by housing with companion., Li, Bo, Zhang, Hao, Cao, Yi, Li, Zhao, Xu, Xinlei, Song, Zhenhua, Wang, Jinhui, 2022
  • miRNA and mRNA Profiles in Ventral Tegmental Area From Juvenile Mice With Companion Communication of Improving CUMS-Induced Depression-Like Behaviors., Zhenhua Song, Jinhui Wang, 2021
  • miRNA-324/-133a essential for recruiting new synapse innervations and associative memory cells in coactivated sensory cortices., Wu, Ruixiang, Cui, Shan, Wang, JinHui, 2020
  • Molecular mechanism of reward treatment ameliorating chronic stress-induced depressive-like behavior assessed by sequencing miRNA and mRNA in medial prefrontal cortex., An, Tingting, Song, Zhenhua, Wang, Jinhui, 2020
  • mRNA and microRNA profiles are associated with stress susceptibility and resilience induced by psychological stress in the prefrontal cortex., Wang Jinhui, 2020
  • mRNA and miRNA profiles in the nucleus accumbens are associated with psychological stress-induced susceptible and resilient mice., Lu, Yanjun, Yang, Jiuyong, Sun, Jinyan, Lu, Wei, Wang, JinHui, 2020
  • microRNA-15b contributes to depression-like behavior in mice by affecting synaptic protein levels and function in the nucleus accumbens., Li Guo, Zhaoming Zhu, Guangyan Wang, Shan Cui, Meng Shen, Zhenhua Song, JinHui Wang, 2020
  • mRNA and microRNA Profiles in the Amygdala Are Relevant to Susceptibility and Resilience to Psychological Stress Induced in Mice., Sun, Jinyan, Lu, Yanjun, Yang, Jiuyong, Song, Zhenhua, Lu, Wei, Wang, JinHui, 2020
  • mRNA and miRNA profiles in the nucleus accumbens are related to fear memory and anxiety induced by physical or psychological stress., Du, Kaixin, Lu, Wei, Sun, Yan, Feng, Jing, Wang, JinHui, 2019
  • Coactivations of barrel and piriform cortices induce their mutual synapse innervations and recruit associative memory cells., Gao, Zilong, Wu, Ruixiang, Chen, Changfeng, Wen, Bo, Liu, Yahui, Lu, Wei, Chen, Na, Feng, Jing, Fan, Ruichen, Wang, Dangui, Cui, Shan, Wang, JinHui, 2019
  • Searching basic units in memory traces: associative memory cells., JinHui Wang, 2019
  • microRNA and mRNA profiles in the amygdala are relevant to fear memory induced by physical or psychological stress., Sun, Yan, Lu, Wei, Du, Kaixin, Wang, JinHui, 2019
  • microRNA and mRNA profiles in the amygdala are associated with stress-induced depression and resilience in juvenile mice., Shen, Mengmeng, Song, Zhenhua, Wang, JinHui, 2019
  • microRNA and mRNA profiles in ventral tegmental area relevant to stress-induced depression and resilience., Sun, Xiaoyan, Song, Zhenhua, Si, Yawei, Wang, JinHui, 2018
  • microRNA and mRNA profiles in nucleus accumbens underlying depression versus resilience in response to chronic stress., Si, Yawei, Song, Zhenhua, Sun, Xiaoyan, Wang, JinHui, 2018
  • Associative memory cells and their working principle in the brain., JinHui Wang, Shan Cui, 2018
  • Cell-specific plasticity associated with integrative memory of triple sensory signals in the barrel cortex., Jing Feng, Wei Lu, GuangYan Wang, ZhaoMing Zhu, Yan Sun, Kaixin Du, JinHui Wang, 2018
  • Coordinated Plasticity among Glutamatergic and GABAergic Neurons and Synapses in the Barrel Cortex Is Correlated to Learning Efficiency., Zhao, Xin, Huang, Li, Guo, Rui, Liu, Yulong, Zhao, Shidi, Guan, Sudong, Ge, Rongjing, Cui, Shan, Wang, Shirlene, Wang, JinHui, 2017
  • Associative memory cells: Formation, function and perspectives., Wang Jinhui, 2017
  • PKC and CaMK-II inhibitions coordinately rescue ischemia-induced GABAergic neuron dysfunction., Huang, Li, Wang, Chun, Zhao, Shidi, Ge, Rongjing, Guan, Sudong, Wang, JinHui, 2017
  • GABAergic neurons in nucleus accumbens are correlated to resilience and vulnerability to chronic stress for major depression., Zhu, Zhaoming, Wang, Guangyan, Ma, Ke, Cui, Shan, Wang, JinHui, 2017
  • Piriform cortical glutamatergic and GABAergic neurons express coordinated plasticity for whisker-induced odor recall., Liu, Yahui, Gao, Zilong, Chen, Changfeng, Wen, Bo, Huang, Li, Ge, Rongjing, Zhao, Shidi, Fan, Ruichen, Feng, Jing, Lu, Wei, Wang, Liping, Wang, JinHui, 2017
  • Associative Memory Extinction Is Accompanied by Decayed Plasticity at Motor Cortical Neurons and Persistent Plasticity at Sensory Cortical Neurons., Guo, Rui, Ge, Rongjing, Zhao, Shidi, Liu, Yulong, Zhao, Xin, Huang, Li, Guan, Sodong, Lu, Wei, Cui, Shan, Wang, Shirlene, Wang, JinHui, 2017
  • Functional compatibility between Purkinje cell axon branches and their target neurons in the cerebellum., Yang, Zhilai, Chen, Na, Ge, Rongjing, Qian, Hao, Wang, JinHui, 2017
  • Activity-induced spontaneous spikes in GABAergic neurons suppress seizure discharges: an implication of computational modeling., Lu, Wei, Feng, Jing, Wen, Bo, Wang, Kewei, Wang, JinHui, 2017
  • Barrel Cortical Neuron Integrates Triple Associated Signals for Their Memory Through Receiving Epigenetic-Mediated New Synapse Innervations., Feng, Jing, Lu, Wei, Wang, Dangui, Ma, Ke, Song, Zhenhua, Chen, Na, Sun, Yan, Du, Kaixin, Shen, Mengmeng, Cui, Shan, Wang, JinHui, 2017
  • Activity strengths of cortical glutamatergic and GABAergic neurons are correlated with transgenerational inheritance of learning ability., Liu, Yulong, Ge, Rongjing, Zhao, Xin, Guo, Rui, Huang, Li, Zhao, Shidi, Guan, Sudong, Lu, Wei, Cui, Shan, Wang, Shirlene, Wang, JinHui, 2017
  • Synapse Innervation and Associative Memory Cell Are Recruited for Integrative Storage of Whisker and Odor Signals in the Barrel Cortex through miRNA-Mediated Processes., Lei, Zhuofan, Wang, Dangui, Chen, Na, Ma, Ke, Lu, Wei, Song, Zhenhua, Cui, Shan, Wang, JinHui, 2017
  • Reward memory relieves anxiety-related behavior through synaptic strengthening and protein kinase C in dentate gyrus., Lei, Zhuofan, Liu, Bei, Wang, JinHui, 2016
  • Incoordination among Subcellular Compartments Is Associated with Depression-Like Behavior Induced by Chronic Mild Stress., Xu, Aiping, Cui, Shan, Wang, JinHui, 2016
  • Molecular Mechanism for Stress-Induced Depression Assessed by Sequencing miRNA and mRNA in Medial Prefrontal Cortex., Ma, Ke, Guo, Li, Xu, Aiping, Cui, Shan, Wang, JinHui, 2016
  • Impaired GABA synthesis, uptake and release are associated with depression-like behaviors induced by chronic mild stress., Ma, K, Xu, A, Cui, S, Sun, MR, Xue, YC, Wang, JH, 2016
  • Associations of Unilateral Whisker and Olfactory Signals Induce Synapse Formation and Memory Cell Recruitment in Bilateral Barrel Cortices: Cellular Mechanism for Unilateral Training Toward Bilateral Memory., Gao, Zilong, Chen, Lei, Fan, Ruicheng, Lu, Wei, Wang, Dangui, Cui, Shan, Huang, Li, Zhao, Shidi, Guan, Sudong, Zhu, Yan, Wang, JinHui, 2016
  • Coordinated Plasticity between Barrel Cortical Glutamatergic and GABAergic Neurons during Associative Memory., Yan, Fenxia, Gao, Zilong, Chen, Pin, Huang, Li, Wang, Dangui, Chen, Na, Wu, Ruixiang, Feng, Jing, Cui, Shan, Lu, Wei, Wang, JinHui, 2016
  • Glucocorticoid Induces Incoordination between Glutamatergic and GABAergic Neurons in the Amygdala., Wang, GuangYan, Zhu, ZhaoMing, Cui, Shan, Wang, JinHui, 2016
  • Neurons in the barrel cortex turn into processing whisker and odor signals: a cellular mechanism for the storage and retrieval of associative signals., Wang, Dangui, Zhao, Jun, Gao, Zil
Neuroscience Physiology Memory Cells Neural Circuits Depression Synaptic Information Encoding Molecular Mechanisms Neurobiology Cellular Mechanisms Neural Plasticity

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