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Journal Abstract Search


226 related items for PubMed ID: 21557647

  • 1. Neural basis of linearization in speech production.
    Ye Z, Habets B, Jansma BM, Münte TF.
    J Cogn Neurosci; 2011 Nov; 23(11):3694-702. PubMed ID: 21557647
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  • 2. Task-modulated activation and functional connectivity of the temporal and frontal areas during speech comprehension.
    Yue Q, Zhang L, Xu G, Shu H, Li P.
    Neuroscience; 2013 May 01; 237():87-95. PubMed ID: 23357111
    [Abstract] [Full Text] [Related]

  • 3. Sign and speech: amodal commonality in left hemisphere dominance for comprehension of sentences.
    Sakai KL, Tatsuno Y, Suzuki K, Kimura H, Ichida Y.
    Brain; 2005 Jun 01; 128(Pt 6):1407-17. PubMed ID: 15728651
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  • 4. Expectancy constraints in degraded speech modulate the language comprehension network.
    Obleser J, Kotz SA.
    Cereb Cortex; 2010 Mar 01; 20(3):633-40. PubMed ID: 19561061
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  • 6. An fMRI study of processing novel metaphoric sentences.
    Mashal N, Faust M, Hendler T, Jung-Beeman M.
    Laterality; 2009 Jan 01; 14(1):30-54. PubMed ID: 18608849
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  • 8. Disentangling the brain networks supporting affective speech comprehension.
    Hervé PY, Razafimandimby A, Vigneau M, Mazoyer B, Tzourio-Mazoyer N.
    Neuroimage; 2012 Jul 16; 61(4):1255-67. PubMed ID: 22507230
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  • 9. Fronto-temporal interactions during overt verbal initiation and suppression.
    Allen P, Mechelli A, Stephan KE, Day F, Dalton J, Williams S, McGuire PK.
    J Cogn Neurosci; 2008 Sep 16; 20(9):1656-69. PubMed ID: 18345980
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  • 10. Unification of speaker and meaning in language comprehension: an FMRI study.
    Tesink CM, Petersson KM, van Berkum JJ, van den Brink D, Buitelaar JK, Hagoort P.
    J Cogn Neurosci; 2009 Nov 16; 21(11):2085-99. PubMed ID: 19016606
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  • 11. From a concept to a word in a syntactically complete sentence: an fMRI study on spontaneous language production in an overt picture description task.
    Grande M, Meffert E, Schoenberger E, Jung S, Frauenrath T, Huber W, Hussmann K, Moormann M, Heim S.
    Neuroimage; 2012 Jul 02; 61(3):702-14. PubMed ID: 22504766
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  • 12. Native and non-native reading of sentences: an fMRI experiment.
    Rüschemeyer SA, Zysset S, Friederici AD.
    Neuroimage; 2006 May 15; 31(1):354-65. PubMed ID: 16427323
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  • 13. Neural correlates of syntactic movement: converging evidence from two fMRI experiments.
    Ben-Shachar M, Palti D, Grodzinsky Y.
    Neuroimage; 2004 Apr 15; 21(4):1320-36. PubMed ID: 15050558
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  • 15. When elephants fly: differential sensitivity of right and left inferior frontal gyri to discourse and world knowledge.
    Menenti L, Petersson KM, Scheeringa R, Hagoort P.
    J Cogn Neurosci; 2009 Dec 15; 21(12):2358-68. PubMed ID: 19016600
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  • 16. Neural basis of syntactic processing of simple sentences in Japanese.
    Ogawa K, Ohba M, Inui T.
    Neuroreport; 2007 Sep 17; 18(14):1437-41. PubMed ID: 17712270
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  • 20. Top-down and bottom-up processes in speech comprehension.
    Zekveld AA, Heslenfeld DJ, Festen JM, Schoonhoven R.
    Neuroimage; 2006 Oct 01; 32(4):1826-36. PubMed ID: 16781167
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