How natural speech is represented in the auditory cortex constitutes a major challenge for cognitive neuroscience. Although many single-unit and neuroimaging studies have yielded valuable insights about the processing of speech and matched complex sounds, the mechanisms underlying the analysis of speech dynamics in human auditory cortex remain largely unknown. Here, we show that the phase pattern of theta band (4-8 Hz) responses recorded from human auditory cortex with magnetoencephalography (MEG) reliably tracks and discriminates spoken sentences and that this discrimination ability is correlated with speech intelligibility. The findings suggest that an similar to 200 ms temporal window (period of theta oscillation) segments the incoming s...
Many environmental stimuli present a quasi-rhythmic structure at different timescales that the brain...
A growing body of evidence shows that ongoing oscillations in auditory cortex modulate their phase t...
How the human auditory system extracts perceptually relevant acoustic features of speech is unknown....
How natural speech is represented in the auditory cortex constitutes a major challenge for cognitive...
SummaryHow natural speech is represented in the auditory cortex constitutes a major challenge for co...
Brain oscillations are dynamic entities, rapidly varying in time and frequency that are extensively ...
Brain oscillations are dynamic entities, rapidly varying in time and frequency that are extensively ...
Natural sounds, including vocal communication sounds, contain critical information at multiple time ...
Cortical oscillations are likely candidates for segmentation and coding of continuous speech. Here, ...
Cortical oscillations are likely candidates for segmentation and coding of continuous speech. Here, ...
Cortical oscillations are likely candidates for segmentation and coding of continuous speech. Here, ...
Cortical oscillations are likely candidates for segmentation and coding of continuous speech. Here, ...
<div><p>Cortical oscillations are likely candidates for segmentation and coding of continuous speech...
International audienceCortical oscillations are likely candidates for segmentation and coding of con...
International audienceCortical oscillations are likely candidates for segmentation and coding of con...
Many environmental stimuli present a quasi-rhythmic structure at different timescales that the brain...
A growing body of evidence shows that ongoing oscillations in auditory cortex modulate their phase t...
How the human auditory system extracts perceptually relevant acoustic features of speech is unknown....
How natural speech is represented in the auditory cortex constitutes a major challenge for cognitive...
SummaryHow natural speech is represented in the auditory cortex constitutes a major challenge for co...
Brain oscillations are dynamic entities, rapidly varying in time and frequency that are extensively ...
Brain oscillations are dynamic entities, rapidly varying in time and frequency that are extensively ...
Natural sounds, including vocal communication sounds, contain critical information at multiple time ...
Cortical oscillations are likely candidates for segmentation and coding of continuous speech. Here, ...
Cortical oscillations are likely candidates for segmentation and coding of continuous speech. Here, ...
Cortical oscillations are likely candidates for segmentation and coding of continuous speech. Here, ...
Cortical oscillations are likely candidates for segmentation and coding of continuous speech. Here, ...
<div><p>Cortical oscillations are likely candidates for segmentation and coding of continuous speech...
International audienceCortical oscillations are likely candidates for segmentation and coding of con...
International audienceCortical oscillations are likely candidates for segmentation and coding of con...
Many environmental stimuli present a quasi-rhythmic structure at different timescales that the brain...
A growing body of evidence shows that ongoing oscillations in auditory cortex modulate their phase t...
How the human auditory system extracts perceptually relevant acoustic features of speech is unknown....