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语言理解中句法加工的脑机制 被引量:4

The Brain Basis of Syntactic Processing During Language Comprehension
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摘要 大量研究表明左侧额叶和颞叶的多个脑区与句法加工有关,已有的理论模型分别从不同的角度对句法加工的脑机制进行了解释。通过文献比较与分析发现,对句法加工的操作定义、实验任务、被试个体差异以及语言差异等均可能导致研究结果出现差异。在将来的研究中,可以通过跨语言、多任务比较,不同层面的句法加工的操作,在方法上将个体功能定位分析与传统的组分析相结合,以及从神经网络的角度来更准确和全面地揭示句法加工的脑机制。 Left frontal and temporal brain areas are considered essential for syntactic processing during language comprehension. However, several proposed neural models represent differing views about the mechanisms underlying syntactic processing. Possible reasons for this discrepancy include differences in the manipulation of syntactic processing, the experimental tasks employed, the individual differences of participants, and the differences between languages. Accordingly, to better understand the neural basis of syntactic processing and language comprehension, we suggest that studies which include direct comparisons between languages, tasks, and different aspects of syntactic processing are necessary. Further, the combination of the individual-based functional localization approach and the traditional group analysis can reduce the influence of individual differences between participants. Functional connectivity studies may clarify how these brain areas cooperate with each other and provide an informative picture of syntactic processing.
出处 《心理科学进展》 CSSCI CSCD 北大核心 2012年第12期1940-1951,共12页 Advances in Psychological Science
基金 国家自然科学基金项目(30900392)
关键词 句法加工 神经机制 脑成像 语言理解 syntactic processing neural mechanism neuroimaging language comprehension
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参考文献75

  • 1高兵,曹晖,曹聘.句法加工的脑机制[J].心理科学进展,2006,14(1):32-39. 被引量:12
  • 2Ben-Shachar, M., Palti, D., & Grodzinsky, Y. (2004). Neural correlates of syntactic movement: Converging evidence from two fMRI experiments. Neurolmage, 21(4), 1320-1336. 被引量:1
  • 3Bick, A. S., Goelman, G., & Frost, R. (2011). Hebrew brain vs. English brain: Language modulates the way it is processed. Journal of Cognitive Neuroscience, 23(9), 2280-2290. 被引量:1
  • 4Bookheimer, S. (2002). Functional MRI of language: New approaches to understanding the cortical organization of semantic processing. Annual Review of Neuroscience, 25, 151-188. 被引量:1
  • 5Bornkessel-Schlesewsky, I., & Schlesewsky, M. (2009). The role of prominence information in the real-time comprehension of transitive constructions: A cross- linguistic approach. Language and Linguistics Compass, 3(1), 19-58. 被引量:1
  • 6Bornkessel, I., Zysset, S., Friederici, A. D., von Cramon, D. Y., & Schlesewsky, M. (2005). Who did what to whom? The neural basis of argument hierarchies during language comprehension. Neurolmage, 26(1), 221-233. 被引量:1
  • 7Braun, A. R., & Meltzer, J. A. (2011). An EEG-MEG dissociation between online syntactic comprehension and post Hoc reanalysis. Frontiers in Human Neuroscience, 5, 10. 被引量:1
  • 8Bullmore, E. T., Honey, G. D., Fu, C. H. Y., Kim, J., Brammer, M. J., Croudace, T. J., et al. (2002). Effects ofverbal working memory load corticocortical connectivity modeled by path analysis of functional magnetic resonance imaging data. Neurolmage, 17(2), 573-582. 被引量:1
  • 9Caplan, D., Alpert, N., & Waters, G. (1999). PET studies of syntactic processing with auditory sentence presentation. Neurolmage, 9(3), 343-351. 被引量:1
  • 10Caplan, D., Chen, E., & Waters, G. (2008). Task-dependent and task-independent neurovascular responses to syntactic processing. Cortex, 44(3), 257-275. 被引量:1

二级参考文献40

  • 1Friederici A D,Cramon DY,Kotz SA.Language related brain potentials in patients with cortical and subcortical left hemisphere lesions.Brain,1999,122:1033~1047 被引量:1
  • 2Kotz S A.,Cramon DY,Friederici AD.Differentiation of syntactic processes in the left and right anterior temporal lobe:ERP evidence from lesion patients.Brain Lang.,2003,87:135~136 被引量:1
  • 3Wang Y,Oertel U,Meyer M,et al.MEG source localization of early syntactic processes.NemoImage,2000,11 (5),Part2 of 2 Parts 被引量:1
  • 4Friederici A D,Wang Y,Herrmann C S,et al.Localization of Early Syntactic Processes in Frontal and Temporal Cortical Areas:A Magnetoencephalographic Study.Human Brain Mapping,2000,11:1~11 被引量:1
  • 5Kuperberg G,Halgren E,Greve D,et al.Event-related fMRI reveals distinct patterns of neural modulation during semantic and syntactic processing of sentences.NeuroImage,2000,11 (5),Part 2 of 2 parts 被引量:1
  • 6Osterhout L,Holcomb P J.Event-related brain potentials elicited by syntactic anomaly.J.Memory Lang.,1992,31:785~806 被引量:1
  • 7Ainsworth-Darnell K,Shulman H G,Boland J E.Dissociating Brain Responses to Syntactic and Semantic Anomalies:Evidence from Event-Related Potentials.Journal of Memory and Language,1998,38:112~130 被引量:1
  • 8Hagoort P,Brown C M.ERP effects of listening to speech compared to reading:the P600/SPS to syntactic violations in spoken sentences and rapid serial visual presentation.Neuropsychologia,2000,38(11):1531~1549 被引量:1
  • 9Hagoort P,Wassenaar M,Brown C M.Syntax-related ERP-effects in Dutch.Cognitive Brain Research,2003,16:38~50 被引量:1
  • 10Friederici A D,Gunter T C,Hahne A,et al.The relative timing of syntactic and semantic processes in sentence comprehension.Neuroreport,2004,15(1):165~169 被引量:1

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