基本介紹
- 中文名:陳霓虹
- 學位/學歷:博士
- 職業:教師
- 專業方向:認知神經科學,視覺
- 任職院校:清華大學心理學系
人物經歷,研究方向,學術兼職,學術成果,
人物經歷
教育經歷
2010 - 2015 北京大學 認知心理學 博士 (優秀博士生論文)
2006 - 2010 北京大學 心理學學士、藝術學士 (雙學位)
工作履歷
2017 – 2019 美國南加州大學 研究科學家(Research Scientist)
2015 - 2017 美國南加州大學 博士後
研究方向
認知神經科學,視覺,知覺學習,腦成像,心理物理學
學術兼職
Cerebral Cortex/ NeuroImage/ PLOS ONE/ Scientific Report/ Journal of Vision/ eNeuro
學術成果
Chen N.*, Shin K., Millin R., Song Y., Kwon M., Tjan B.. (in press) Cortical reorganization of peripheral vision induced by simulated central vision loss. The Journal of Neuroscience.
Chen N.*, Bao P., Tjan B.. (2018) Contextual-dependent attention modulation on crowded orientation signals in human visual cortex. The Journal of Neuroscience, 38(39), 8433-8440.
Chen N.*, Lu J., Shao H., Weng X. and Fang F.* (2017) Neural mechanisms of motion perceptual learning in noise. Human Brain Mapping 38(12), 6029-6042.
Chen N., Cai P., Zhou T., Thompson B. and Fang F.* (2016) Perceptual learning modifies the functional specializations of visual cortical areas. Proceedings of the National Academy of Sciences of the United States of America 113(20), 5724-5729.
Commentary: Sasaki Y., & Watanabe T. (2016). V3A takes over a job of MT+ after training on a visual task. Proceedings of the National Academy of Sciences of the United States of America, 113(22), 6092–6093.
Chen N.#, Bi T.#, Zhou T., Li S., Liu Z., Fang F.* (2015) Sharpened cortical tuning and enhanced cortico-cortical communication contribute to the long-term neural mechanisms of visual motion perceptual learning. NeuroImage 115,17-29.
Cai P.#, Chen N.#, Zhou T., Thompson B., Fang F.* (2014) Global versus local: double dissociation between MT+ and V3A in motion processing revealed using continuous theta burst transcranial magnetic stimulation. Experimental Brain Research 232(12), 4035-4041.
Chen N., Fang F.* (2011) Tilt aftereffect from orientation discrimination learning. Experimental Brain Research 215(3), 227-234.
Bi T.#, Chen N.#, Weng Q.#, He D., Fang F.* (2010) Learning to discriminate face views. Journal of Neurophysiology 104(6), 3305-3311.

