Brain oscillations, or neural rhythms, reflect widespread functional connections between large-scale neural networks, as well as within cortical networks. As such they have been related to many aspects of human behaviour. An increasing number of studies have demonstrated the role of brain oscillations at distinct frequency bands in cognitive, sensory and motor tasks. Consequentially, those rhythms also affect diverse aspects of human communication. On the one hand, this comprises verbal communication; a field where the understanding of neural mechanisms has seen huge advances in recent years. Speech is inherently organised in a rhythmic manner. For example, time scales of phonemes and syllables, but also formal prosodic aspects such as into...
Common everyday activities—riding a bike to work, taking notes on a lecture, or choosing food at the...
International audienceRhythmic sensory or electrical stimulation will produce rhythmic brain respons...
International audienceRhythmic sensory or electrical stimulation will produce rhythmic brain respons...
For the last decades neuroscientists have grown interest in the analysis of the rhythmic activity of...
For the last decades neuroscientists have grown interest in the analysis of the rhythmic activity of...
For the last decades neuroscientists have grown interest in the analysis of the rhythmic activity of...
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 ...
Neuronal oscillations are ubiquitous in the brain and may contribute to cognition in several ways: f...
Neuronal oscillations are ubiquitous in the brain and may contribute to cognition in several ways: f...
Neuronal oscillations are ubiquitous in the brain and may contribute to cognition in several ways: f...
International audienceIn pandemic times, when visual speech cues are masked, it becomes particularly...
International audienceIn pandemic times, when visual speech cues are masked, it becomes particularly...
Our sensory environment is teeming with complex rhythmic structure, to which neural oscillations can...
Common everyday activities—riding a bike to work, taking notes on a lecture, or choosing food at the...
Common everyday activities—riding a bike to work, taking notes on a lecture, or choosing food at the...
International audienceRhythmic sensory or electrical stimulation will produce rhythmic brain respons...
International audienceRhythmic sensory or electrical stimulation will produce rhythmic brain respons...
For the last decades neuroscientists have grown interest in the analysis of the rhythmic activity of...
For the last decades neuroscientists have grown interest in the analysis of the rhythmic activity of...
For the last decades neuroscientists have grown interest in the analysis of the rhythmic activity of...
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 ...
Neuronal oscillations are ubiquitous in the brain and may contribute to cognition in several ways: f...
Neuronal oscillations are ubiquitous in the brain and may contribute to cognition in several ways: f...
Neuronal oscillations are ubiquitous in the brain and may contribute to cognition in several ways: f...
International audienceIn pandemic times, when visual speech cues are masked, it becomes particularly...
International audienceIn pandemic times, when visual speech cues are masked, it becomes particularly...
Our sensory environment is teeming with complex rhythmic structure, to which neural oscillations can...
Common everyday activities—riding a bike to work, taking notes on a lecture, or choosing food at the...
Common everyday activities—riding a bike to work, taking notes on a lecture, or choosing food at the...
International audienceRhythmic sensory or electrical stimulation will produce rhythmic brain respons...
International audienceRhythmic sensory or electrical stimulation will produce rhythmic brain respons...