NEYROLINGVISTIKA TA’LIMOTIDAGI YANGI YONDASHUVLAR
Keywords:
Neurolinguistics, communication system, brain, linguisticsAbstract
Neurolinguistics is the study of how language is represented in the brain: how and where our brain stores our knowledge about the language (or languages) we speak, understand, read and write, and what happens in our brain when we acquire it. learns this knowledge and what happens when we apply it in our daily lives. Neurolinguists try to answer the following questions: What about our brain, which can implement human language - why is our communication system so complex and different from that of other animals? Does language use the same neural computation as other cognitive systems, such as music or mathematics? Where is the word you learned located in your brain? How do you "remember" when you need it?
References
January, D., Trueswell, J.C., & Thompson-Schill, S.L. (2009). Co-localization of Stroop and Syntactic Ambiguity Resolution in Broca’s Area: Implications for the Neural Basis of Sentence Processing. Journal of Cognitive Neuroscience, 21(12), 2434-2444. PMID: 19199402.
*Menn, Lise. 2011. Chapter 2, How Brains Work, and Chapter 6, Analyzing Aphasic Speech and Communication, in Psycholinguistics: Introduction and Applications. Plural Publishing.
Novick, J.M., Trueswell, J.C., & Thomspon-Schill, S.L. (2010). Broca's Area and Language Processing: Evidence for the Cognitive Control Connection. Language and Linguistics Compass.
*Patel, Aniruddh D. 2008. Music, Language, and the Brain. Oxford University Press.
Ramus, Franck. 2006. Genes, brains and cognition: A roadmap for the cognitive scientist. Cognition 101, 247-269.
Schwartz, Myrna F., Dell, Gary S., Martin, Nadine, Gahl, Susanne, & Sobel. P. (2006). A case-series test of the interactive two-step model of lexical access: Evidence from picture naming. Journal of Memory and Language, 54, 228-264.
Tse, C.-Y., Lee, C.-L., Sullivan, J., Garnsey, S.M., Dell, G.S., Fabiani, M., & Gratton, G. (2007). Imaging cortical dynamics of language processing with the event-related optical signal. Proceedings of the National Academy of Sciences of the United States of America, 104, 17157-17162.
Turken, A.U. & Dronkers, N.F. The neural architecture of the language comprehension network: converging evidence from lesion and connectivity analyses. Frontiers in Systems Neuroscience, 2011, 5, 1-20