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Functional organization for musical consonance and tonal pitch hierarchy in human auditory cortex

机译:人类听觉皮层的音乐和谐和音调层次结构的功能组织

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Pitch relationships in music are characterized by their degree of consonance, a hierarchical perceptual quality that distinguishes how pleasant musical chords/intervals sound to the ear. The origins of consonance have been debated since the ancient Greeks. To elucidate the neurobiological mechanisms underlying these musical fundamentals, we recorded neuroelectric brain activity while participants listened passively to various chromatic musical intervals (simultaneously sounding pitches) varying in their perceptual pleasantness (i.e., consonance/ dissonance). Dichotic presentation eliminated acoustic and peripheral contributions that often confound explanations of consonance. We found that neural representations for pitch in early human auditory cortex code perceptual features of musical consonance and follow a hierarchical organization according to music-theoretic principles. These neural correlates emerge pre-attentively within similar to 150 ms after the onset of pitch, are segregated topographically in superior temporal gyrus with a rightward hemispheric bias, and closely mirror listeners' behavioral valence preferences for the chromatic tone combinations inherent to music. A perceptual-based organization implies that parallel to the phonetic code for speech, elements of music are mapped within early cerebral structures according to higher-order, perceptual principles and the rules of Western harmony rather than simple acoustic attributes. (C) 2014 Elsevier Inc. All rights reserved.
机译:在音乐音高关系由学位灵犀的,分层的感知质量区分多么惬意的音乐和弦/间隔声不绝于耳表征。灵犀的起源,因为古希腊人进行了辩论。为了阐明这些音乐基本面基础的神经生物学机制,我们记录了神经电脑活动,而参与者被动收听各种色音程(同时发出的节距)在他们的感知愉悦变化(即,相一致/失调)。双耳演示淘汰,往往挫败灵犀的解释声和外围的贡献。我们发现节距神经表征在音乐的和谐的早期人类听觉皮层代码感性特征,并按照根据音乐理论原则分层组织。这些神经关联出现预聚精会神内类似于沥青的发病后150毫秒中,地形偏析颞上回用向右半球偏压,并密切镜听众为色色调组合行为价偏好固有音乐。一个基于感知的组织意味着平行于语音的拼音码,音乐的元素根据高阶,感性的原则和西方的和谐,而不是简单的声学属性的规则,早期脑结构中的映射。 (c)2014年elsevier Inc.保留所有权利。

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