θ-Band and β-Band Neural Activity Reflects Independent Syllable Tracking and Comprehension of Time-Compressed Speech.

scientific article published on 20 July 2017

θ-Band and β-Band Neural Activity Reflects Independent Syllable Tracking and Comprehension of Time-Compressed Speech. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1523/JNEUROSCI.2882-16.2017
P932PMC publication ID6596908
P698PubMed publication ID28729443

P50authorLorenzo FontolanQ67412331
Luc H ArnalQ47159352
P2093author name stringAnne-Lise Giraud
Maria Pefkou
P2860cites workReconstructing speech from human auditory cortexQ21563531
Speech perception at the interface of neurobiology and linguisticsQ24642572
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Frontal top-down signals increase coupling of auditory low-frequency oscillations to continuous speech in human listeners.Q30406541
Speech encoding by coupled cortical theta and gamma oscillations.Q30408460
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Acoustic landmarks drive delta-theta oscillations to enable speech comprehension by facilitating perceptual parsingQ30420787
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Behavioral evidence for the role of cortical θ oscillations in determining auditory channel capacity for speechQ30434184
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Phase-locked responses to speech in human auditory cortex are enhanced during comprehension.Q30454854
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Discrimination of speech stimuli based on neuronal response phase patterns depends on acoustics but not comprehensionQ30473333
Coding of repetitive transients by auditory cortex on Heschl's gyrusQ30479382
Temporal envelope of time-compressed speech represented in the human auditory cortexQ30481123
Phase patterns of neuronal responses reliably discriminate speech in human auditory cortexQ30488506
Speech comprehension is correlated with temporal response patterns recorded from auditory cortexQ30531116
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Human oscillatory brain activity near 40 Hz coexists with cognitive temporal binding.Q35934461
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Syntactic unification operations are reflected in oscillatory dynamics during on-line sentence comprehensionQ38380416
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fMRI of Simultaneous Interpretation Reveals the Neural Basis of Extreme Language ControlQ38426680
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On the possible role of brain rhythms in speech perception: intelligibility of time-compressed speech with periodic and aperiodic insertions of silenceQ44259557
Sound envelope encoding in the auditory cortex revealed by neuromagnetic responses in the theta to gamma frequency bandsQ48167955
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Internalized timing of isochronous sounds is represented in neuromagnetic β oscillations.Q48677364
Early anticipation lies behind the speed of response in conversationQ48738278
Now you'll feel it, now you won't: EEG rhythms predict the effectiveness of perceptual maskingQ48763707
Lexical information drives perceptual learning of distorted speech: evidence from the comprehension of noise-vocoded sentences.Q52050803
P433issue33
P407language of work or nameEnglishQ1860
P304page(s)7930-7938
P577publication date2017-07-20
P1433published inJournal of NeuroscienceQ1709864
P1476titleθ-Band and β-Band Neural Activity Reflects Independent Syllable Tracking and Comprehension of Time-Compressed Speech
P478volume37

Reverse relations

cites work (P2860)
Q96609320Combining predictive coding and neural oscillations enables online syllable recognition in natural speech
Q55091406Perceptually relevant speech tracking in auditory and motor cortex reflects distinct linguistic features.
Q90293554Phase-amplitude coupling between theta and gamma oscillations adapts to speech rate
Q57888905Predictive entrainment of natural speech through two fronto-motor top-down channels
Q47927429Scale-Free Amplitude Modulation of Neuronal Oscillations Tracks Comprehension of Accelerated Speech
Q101574188The role of isochrony in speech perception in noise
Q94591719Using Coherence-based spectro-spatial filters for stimulus features prediction from electro-corticographic recordings

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