The processing of valence is known to recruit the amygdala, orbitofrontal cortex and relevant sensory areas. However, how these regions interact remains unclear. We recorded cortical electrical activity from 7 epileptic patients implanted with depth electrodes for presurgical evaluation while they listened to positively and negatively valenced musical chords. Time frequency analysis suggested a specific role of the orbitofrontal cortex in the processing of positively valenced stimuli while, most importantly, Granger causality analysis revealed that the amygdala tends to drive both the orbitofrontal cortex and the auditory cortex in theta and alpha frequency bands, during the processing of valenced stimuli. Results from the current study sho...
To study emotional reactions to music, it is important to consider the temporal dynamics of both aff...
To study emotional reactions to music, it is important to consider the temporal dynamics of both aff...
We attempt to decode emotional valence from electroencephalographic rhythmic activity in a naturalis...
The processing of valence is known to recruit the amygdala, orbitofrontal cortex, and relevant senso...
International audienceThe processing of valence is known to recruit the amygdala, orbitofrontal cort...
International audienceThe involvement of the amygdala and orbitofrontal cortex in the processing of ...
The involvement of the amygdala and orbitofrontal cortex in the processing of valenced stimuli is we...
Studies investigating the neural processing of musico-acoustic features have tended to do so using h...
Neuroimaging approaches have identified multiple brain sites that are activated in music perception,...
Listening to pleasant music engages a complex distributed network including pivotal areas for audito...
Music is organised both spectrally and temporally, determining musical structures such as musical sc...
The aim of this study was to investigate the brain processes underlying emotions during natural musi...
Music evokes complex emotions beyond pleasant/unpleasant or happy/sad dichotomies usually investigat...
Studies investigating the neural processing of musico-acoustic features have tended to do so using h...
Music is not simply a series of organized pitches, rhythms, and timbres, it is capable of evoking em...
To study emotional reactions to music, it is important to consider the temporal dynamics of both aff...
To study emotional reactions to music, it is important to consider the temporal dynamics of both aff...
We attempt to decode emotional valence from electroencephalographic rhythmic activity in a naturalis...
The processing of valence is known to recruit the amygdala, orbitofrontal cortex, and relevant senso...
International audienceThe processing of valence is known to recruit the amygdala, orbitofrontal cort...
International audienceThe involvement of the amygdala and orbitofrontal cortex in the processing of ...
The involvement of the amygdala and orbitofrontal cortex in the processing of valenced stimuli is we...
Studies investigating the neural processing of musico-acoustic features have tended to do so using h...
Neuroimaging approaches have identified multiple brain sites that are activated in music perception,...
Listening to pleasant music engages a complex distributed network including pivotal areas for audito...
Music is organised both spectrally and temporally, determining musical structures such as musical sc...
The aim of this study was to investigate the brain processes underlying emotions during natural musi...
Music evokes complex emotions beyond pleasant/unpleasant or happy/sad dichotomies usually investigat...
Studies investigating the neural processing of musico-acoustic features have tended to do so using h...
Music is not simply a series of organized pitches, rhythms, and timbres, it is capable of evoking em...
To study emotional reactions to music, it is important to consider the temporal dynamics of both aff...
To study emotional reactions to music, it is important to consider the temporal dynamics of both aff...
We attempt to decode emotional valence from electroencephalographic rhythmic activity in a naturalis...