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Intracranial markers of emotional valence processing and judgments in music

机译:音乐情感价处理和判断的颅内标记

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The involvement of the amygdala and orbitofrontal cortex in the processing of valenced stimuli is well established. However, less is known about the extent to which activity in these regions reflects a stimulus' physical properties, the individual subjective experience it evokes, or both. We recorded cortical electrical activity from five epileptic patients implanted with depth electrodes for presurgical evaluation while they rated "consonant" and "dissonant" musical chords using a "pleasantness" scale. We compared the pattern of responses in the amygdala and orbitofrontal cortex when trials were sorted by pleasantness judgments relative to when they were sorted by the acoustic properties known to influence emotional reactions to musical chords. This revealed earlier differential activity in the amygdala in the physical properties-based, relative to in the judgment-based, analyses. Thus, our results demonstrate that the amygdala has, first and foremost, a high initial sensitivity to the physical properties of valenced stimuli. The finding that differentiations in the amygdala based on pleasantness ratings had a longer latency suggests that in this structure, mediation of emotional judgment follows accumulation of sensory information. This is in contrast to the orbitofrontal cortex where sensitivity to sensory information did not precede differentiation based on affective judgments.
机译:杏仁核和眶额皮层参与化合价刺激的过程已得到充分证实。然而,人们对这些区域的活动在多大程度上反映出刺激的物理特性,所唤起的个体主观体验或两者都知之甚少。我们记录了五名植入深度电极以进行术前评估的癫痫患者的皮质电活动,同时他们使用“愉悦”量表对“和声”和“不和声”和弦进行了评分。我们比较了杏仁核和眶额皮质的反应模式,这些实验是根据愉悦性判断对试验进行分类的,而相对于根据已知会影响对音乐和弦的情感反应的声学特性对试验进行分类的情况。相对于基于判断的分析,这表明基于物理特性的杏仁核的早期差异活动。因此,我们的结果表明杏仁核首先对价态刺激的物理特性具有很高的初始敏感性。基于愉悦度等级的杏仁核的差异具有较长的潜伏期的发现表明,在这种结构中,情绪判断的调解跟随感觉信息的积累。这与眼眶额叶皮层相反,在眼眶皮层中,对感官信息的敏感度并不基于情感判断而先于分化。

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