Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5737663 | Neuroscience | 2017 | 45 Pages |
Abstract
One of the long-standing issues in neurolinguistic research is about the neural basis of word representation, concerning whether grammatical classification or semantic difference causes the neural dissociation of brain activity patterns when processing different word categories, especially nouns and verbs. To disentangle this puzzle, four orthogonalized word categories in Chinese: unambiguous nouns (UN), unambiguous verbs (UV), ambiguous words with noun-biased semantics (AN), and ambiguous words with verb-biased semantics (AV) were adopted in an auditory task for recording electroencephalographic (EEG) signals from 128 electrodes on the scalps of twenty-two subjects. With the advanced current density reconstruction (CDR) algorithm and the constraint of standardized low-resolution electromagnetic tomography, the spatiotemporal brain dynamics of word processing were explored with the results that in multiple time periods including P1 (60-90Â ms), N1 (100-140Â ms), P200 (150-250Â ms) and N400 (350-450Â ms), noun-verb dissociation over the parietal-occipital and frontal-central cortices appeared not only between the UN-UV grammatical classes but also between the grammatically identical but semantically different AN-AV pairs. The apparent semantic dissociation within one grammatical class strongly suggests that the semantic difference rather than grammatical classification could be interpreted as the origin of the noun-verb neural dissociation. Our results also revealed that semantic dissociation occurs from an early stage and repeats in multiple phases, thus supporting a functionally hierarchical word processing mechanism.
Keywords
ICACDRROIResponse accuracy Ambiguous wordsPOIITIMNIACCPCAsLORETAISIElectroencephalographyCurrent density reconstructionSource reconstructionIndependent component analysisPrincipal component analysisfunctional magnetic resonance imagingfMRIPositron emission tomographyreaction timeinter-trial intervalinter-stimulus intervalSemanticsBrodmann arearegion of interestMontreal Neurological InstituteEEGPET
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Authors
Bin Zhao, Jianwu Dang, Gaoyan Zhang,