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      研究隊伍
      杜憶 認知與發(fā)展心理學(xué)研究室研究員
      電  話(huà):86-10-64852198
      電子郵件:duyi@psych.ac.cn
      傳  真:
      課題組網(wǎng)站:http://lasm.psych.ac.cn/
      郵政編碼:100101
      通訊地址:北京市朝陽(yáng)區林萃路16號院中國科學(xué)院心理研究所
      簡(jiǎn)歷
      2000-2005年 北京大學(xué)醫學(xué)部                  學(xué)士
      2005-2011年 北京大學(xué)心理學(xué)系                博士
      2012-2015年 Rotman Research Institute, University of Toronto 博士后
      2015-2016年 Montreal Neurological Institute, McGill University 博士后
      2016年–今  中國科學(xué)院心理研究所                      研究員
      研究領(lǐng)域

      利用心理物理學(xué)方法、多種腦成像技術(shù)(包括功能核磁共振成像、腦磁圖、腦電)和非侵入性神經(jīng)調控技術(shù)(經(jīng)顱電/磁刺激)研究人類(lèi)聽(tīng)覺(jué)言語(yǔ)與音樂(lè )認知的腦機制。 研究方向包括:聽(tīng)覺(jué)加工與多通道整合,言語(yǔ)感知與理解,言語(yǔ)認知的畢生發(fā)展及可塑性,音樂(lè )認知。 

      社會(huì )任職
       
      獲獎及榮譽(yù)

      全國優(yōu)秀博士學(xué)位論文 

      國家自然科學(xué)基金委“優(yōu)秀青年科學(xué)基金”

      北腦青年學(xué)者

      代表論著(zhù)

      Liang, B.S., Li, Y.C., Zhao, W.Y., Du, Y.* (2023). Bilateral human laryngeal motor cortex in perceptual decision of lexical tone and voicing of consonant. Nature Communications, 14, 4710.
      Zhang, L., Wang, X.Y., Alain, C., Du, Y.* (2023). Successful aging of musicians: Preservation of sensorimotor regions aids audiovisual speech-in-noise perception. Science Advances, 9, eadg7056.
      Klarlund, M.*, Brattico, E., Pearce, M., Wu, Y.Y., Vuust, P., Overgaard, M., Du, Y.* (2023). Worlds apart? Testing the cultural distance hypothesis in music perception of Chinese and Western listeners. Cognition, 235, 105405. 
      Zhang, L., Du, Y.* (2022). Lip movements enhance speech representations and effective connectivity in auditory dorsal stream. Neuroimage, 257,119311.
      Zhao, W.Y., Li, Y.C., Du, Y.* (2021) TMS reveals dynamic interaction between inferior frontal gyrus and posterior middle temporal gyrus in gesture-speech semantic integration. Journal of Neuroscience, 41,10356-10364.
      Li, X., Zatorre, R.J., Du, Y.* (2021). The Microstructural plasticity of the arcuate fasciculus undergirds improved speech in noise perception in musicians. Cerebral Cortex, 31, 3975-3985.
      Zhang, L., Fu, X.Y., Luo, D., Xing, L.S.D., Du, Y.* (2021). Musical experience offsets age-related decline in understanding speech-in-noise: Type of training does not matter, working memory is the key. Ear and Hearing, 42, 258-270.
      Liang, B., Du, Y.* (2018). The functional neuroanatomy of lexical tone perception: An activation likelihood estimation meta-analysis. Frontiers in Neuroscience, 12, 495.
      Du, Y.*, Zatorre, R.J. (2017). Musical training sharpens and bonds ears and tongue to hear speech better. Proceedings of the National Academy of Sciences of the United States of America, 114, 13579-13584.
      Du, Y.*, Buchsbaum, B., Grady, C., Alain, C.* (2016). Increased activity in frontal motor cortex compensates impaired speech perception in older adults. Nature Communications, 7, 12241.
      Du, Y., He, Y., Arnott, S.R., Ross, B., Wu, X.H., Li, L.*, Alain, C.* (2015). Rapid tuning of auditory “what” and “where” pathways by training. Cerebral Cortex, 25, 496-506.
      Du, Y., Buchsbaum, B., Grady, C., Alain, C.* (2014). Noise differentially impacts phoneme representations in the auditory and speech motor systems.Proceedings of the National Academy of Sciencesof the United States of America, 111, 7126-7131.
      Du, Y., He, Y., Ross, B., Bardouille, T., Wu, X.H., Li, L.*, Alain, C.* (2011). Human auditory cortex activity shows additive effects of spectral and spatial cues during speech segregation. Cerebral Cortex, 21, 698-707. 
      Du, Y., Wu, X.H., Li, L.* (2011). Differentially organized top-down modulation of prepulse inhibition of startle. Journal of Neuroscience, 31, 13644-13653.
      Du, Y., Kong, L.Z., Wang, Q., Wu, X.H., Li, L.* (2011). Auditory frequency-following response: A neurophysiological measure for studying the “cocktail-party problem”. Neuroscience and Biobehavioral Reviews, 35, 2046-2057.
      Li, L.*, Du, Y., Li, N.X., Wu, X.H., Wu, Y.H. (2009). Top-down modulation of prepulse inhibition of the startle reflex in humans and rats. Neuroscience and Biobehavioral Reviews, 33, 1157-1167. 

       

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