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Mapping Aesthetic Musical Emotions in the Brain

Overview
Journal Cereb Cortex
Specialty Neurology
Date 2011 Dec 20
PMID 22178712
Citations 89
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Abstract

Music evokes complex emotions beyond pleasant/unpleasant or happy/sad dichotomies usually investigated in neuroscience. Here, we used functional neuroimaging with parametric analyses based on the intensity of felt emotions to explore a wider spectrum of affective responses reported during music listening. Positive emotions correlated with activation of left striatum and insula when high-arousing (Wonder, Joy) but right striatum and orbitofrontal cortex when low-arousing (Nostalgia, Tenderness). Irrespective of their positive/negative valence, high-arousal emotions (Tension, Power, and Joy) also correlated with activations in sensory and motor areas, whereas low-arousal categories (Peacefulness, Nostalgia, and Sadness) selectively engaged ventromedial prefrontal cortex and hippocampus. The right parahippocampal cortex activated in all but positive high-arousal conditions. Results also suggested some blends between activation patterns associated with different classes of emotions, particularly for feelings of Wonder or Transcendence. These data reveal a differentiated recruitment across emotions of networks involved in reward, memory, self-reflective, and sensorimotor processes, which may account for the unique richness of musical emotions.

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References
1.
Davidson R . Anterior cerebral asymmetry and the nature of emotion. Brain Cogn. 1992; 20(1):125-51. DOI: 10.1016/0278-2626(92)90065-t. View

2.
Ochsner K, Knierim K, Ludlow D, Hanelin J, Ramachandran T, Glover G . Reflecting upon feelings: an fMRI study of neural systems supporting the attribution of emotion to self and other. J Cogn Neurosci. 2005; 16(10):1746-72. DOI: 10.1162/0898929042947829. View

3.
Henke K . A model for memory systems based on processing modes rather than consciousness. Nat Rev Neurosci. 2010; 11(7):523-32. DOI: 10.1038/nrn2850. View

4.
Koelsch S, Fritz T, Schlaug G . Amygdala activity can be modulated by unexpected chord functions during music listening. Neuroreport. 2008; 19(18):1815-9. DOI: 10.1097/WNR.0b013e32831a8722. View

5.
Juslin P, Vastfjall D . Emotional responses to music: the need to consider underlying mechanisms. Behav Brain Sci. 2008; 31(5):559-75. DOI: 10.1017/S0140525X08005293. View