Low-frequency neural entrainment to rhythmic input has been hypothesized as a canonical mechanism that shapes sensory perception in time. Neural entrainment is deemed particularly relevant for speech analysis, as it would contribute to the extraction of discrete linguistic elements from continuous acoustic signals. However, its causal influence in speech perception has been difficult to establish. Here, we provide evidence that oscillations build temporal predictions about the duration of speech tokens that affect perception. Using magnetoencephalography (MEG), we studied neural dynamics during listening to sentences that changed in speech rate. Weobserved neural entrainment to preceding speech rhythms persisting for several cycles after th...
Brain oscillations have been shown to track the slow amplitude fluctuations in speech during compreh...
Many environmental stimuli contain temporal regularities, a feature that can help predict forthcomin...
International audienceRhythmic sensory or electrical stimulation will produce rhythmic brain respons...
Contains fulltext : 195808.pdf (publisher's version ) (Closed access)Low-frequency...
Item does not contain fulltextLow-frequency neural entrainment to rhythmic input has been hypothesiz...
Low-frequency neural entrainment to rhythmic input has been hypothesized as a canonical mechanism th...
Low-frequency neural entrainment to rhythmic input has been hypothesized as a canonical mechanism th...
Low-frequency neural entrainment to rhythmic input has been hypothesized as a canonical mechanism th...
Speech segmentation requires flexible mechanisms to remain robust to features such as speech rate an...
Speech segmentation requires flexible mechanisms to remain robust to features such as speech rate an...
Brain oscillations have been shown to track the slow amplitude fluctuations in speech during compreh...
In the last decade, the involvement of neural oscillatory mechanisms in speech comprehension has bee...
Neural oscillations may be instrumental for the tracking and segmentation of continuous speech. Earl...
Rhythmic sensory or electrical stimulation will produce rhythmic brain responses. These rhythmic res...
Speech processing is subserved by neural oscillations. Through a mechanism termed entrainment, oscil...
Brain oscillations have been shown to track the slow amplitude fluctuations in speech during compreh...
Many environmental stimuli contain temporal regularities, a feature that can help predict forthcomin...
International audienceRhythmic sensory or electrical stimulation will produce rhythmic brain respons...
Contains fulltext : 195808.pdf (publisher's version ) (Closed access)Low-frequency...
Item does not contain fulltextLow-frequency neural entrainment to rhythmic input has been hypothesiz...
Low-frequency neural entrainment to rhythmic input has been hypothesized as a canonical mechanism th...
Low-frequency neural entrainment to rhythmic input has been hypothesized as a canonical mechanism th...
Low-frequency neural entrainment to rhythmic input has been hypothesized as a canonical mechanism th...
Speech segmentation requires flexible mechanisms to remain robust to features such as speech rate an...
Speech segmentation requires flexible mechanisms to remain robust to features such as speech rate an...
Brain oscillations have been shown to track the slow amplitude fluctuations in speech during compreh...
In the last decade, the involvement of neural oscillatory mechanisms in speech comprehension has bee...
Neural oscillations may be instrumental for the tracking and segmentation of continuous speech. Earl...
Rhythmic sensory or electrical stimulation will produce rhythmic brain responses. These rhythmic res...
Speech processing is subserved by neural oscillations. Through a mechanism termed entrainment, oscil...
Brain oscillations have been shown to track the slow amplitude fluctuations in speech during compreh...
Many environmental stimuli contain temporal regularities, a feature that can help predict forthcomin...
International audienceRhythmic sensory or electrical stimulation will produce rhythmic brain respons...