Cortical oscillations are likely candidates for segmentation and coding of continuous speech. Here, we monitored continuous speech processing with magnetoencephalography (MEG) to unravel the principles of speech segmentation and coding. We demonstrate that speech entrains the phase of low-frequency (delta, theta) and the amplitude of high-frequency (gamma) oscillations in the auditory cortex. Phase entrainment is stronger in the right and amplitude entrainment is stronger in the left auditory cortex. Furthermore, edges in the speech envelope phase reset auditory cortex oscillations thereby enhancing their entrainment to speech. This mechanism adapts to the changing physical features of the speech envelope and enables efficient, stimulus-spe...
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 ...
During speech listening, the brain parses a continuous acoustic stream of information into computati...
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...
Cortical oscillations are likely candidates for segmentation and coding of continuous speech. Here, ...
International audienceCortical oscillations are likely candidates for segmentation and coding of con...
International audienceCortical oscillations are likely candidates for segmentation and coding of con...
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, ...
Humans show a remarkable ability to understand continuous speech even under adverse listening condit...
Many environmental stimuli present a quasi-rhythmic structure at different timescales that the brain...
SummaryHow natural speech is represented in the auditory cortex constitutes a major challenge for co...
How natural speech is represented in the auditory cortex constitutes a major challenge for cognitive...
How natural speech is represented in the auditory cortex constitutes a major challenge for cognitive...
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 ...
During speech listening, the brain parses a continuous acoustic stream of information into computati...
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...
Cortical oscillations are likely candidates for segmentation and coding of continuous speech. Here, ...
International audienceCortical oscillations are likely candidates for segmentation and coding of con...
International audienceCortical oscillations are likely candidates for segmentation and coding of con...
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, ...
Humans show a remarkable ability to understand continuous speech even under adverse listening condit...
Many environmental stimuli present a quasi-rhythmic structure at different timescales that the brain...
SummaryHow natural speech is represented in the auditory cortex constitutes a major challenge for co...
How natural speech is represented in the auditory cortex constitutes a major challenge for cognitive...
How natural speech is represented in the auditory cortex constitutes a major challenge for cognitive...
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 ...
During speech listening, the brain parses a continuous acoustic stream of information into computati...