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RESEARCH PRODUCT
Linguistic Bias Modulates Interpretation of Speech via Neural Delta-Band Oscillations.
Phoebe GastonNoura SchmuckLars MeyerAngela D. FriedericiMolly J. Henrysubject
AdultMalePhraseCognitive NeuroscienceElectroencephalography050105 experimental psychologyMemorization03 medical and health sciencesCellular and Molecular NeuroscienceYoung Adult0302 clinical medicineBiasmedicineHumansSpeech0501 psychology and cognitive sciencesProsodyInterpretation (logic)Psycholinguisticsmedicine.diagnostic_test05 social sciencesElectroencephalographyLinguisticsLinguisticsComprehensionSpeech PerceptionFemaleNeurocomputational speech processingPsychologyComprehension030217 neurology & neurosurgeryWord (computer architecture)description
Language comprehension requires that single words be grouped into syntactic phrases, as words in sentences are too many to memorize individually. In speech, acoustic and syntactic grouping patterns mostly align. However, when ambiguous sentences allow for alternative grouping patterns, comprehenders may form phrases that contradict speech prosody. While delta-band oscillations are known to track prosody, we hypothesized that linguistic grouping bias can modulate the interpretational impact of speech prosody in ambiguous situations, which should surface in delta-band oscillations when grouping patterns chosen by comprehenders differ from those indicated by prosody. In our auditory electroencephalography study, the interpretation of ambiguous sentences depended on whether an identical word was either followed by a prosodic boundary or not, thereby signaling the ending or continuation of the current phrase. Delta-band oscillatory phase at the critical word should reflect whether participants terminate a phrase despite a lack of acoustic boundary cues. Crossing speech prosody with participants’ grouping choice, we observed a main effect of grouping choice—independent of prosody. An internal linguistic bias for grouping words into phrases can thus modulate the interpretational impact of speech prosody via delta-band oscillatory phase.
year | journal | country | edition | language |
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2017-09-01 | Cerebral cortex (New York, N.Y. : 1991) |