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Pupillometry of Groove: Evidence for Noradrenergic Arousal in the Link Between Music and Movement

机译:沟的ill法:音乐和运动之间的联系中去甲肾上腺素唤醒的证据。

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摘要

The capacity to entrain motor action to rhythmic auditory stimulation is highly developed in humans and extremely limited in our closest relatives. An important aspect of auditory-motor entrainment is that not all forms of rhythmic stimulation motivate movement to the same degree. This variation is captured by the concept of musical groove: high-groove music stimulates a strong desire for movement, whereas low-groove music does not. Here, we utilize this difference to investigate the neurophysiological basis of our capacity for auditory-motor entrainment. In a series of three experiments we examine pupillary responses to musical stimuli varying in groove. Our results show stronger pupil dilation in response to (1) high- vs. low-groove music, (2) high vs. low spectral content, and (3) syncopated vs. straight drum patterns. We additionally report evidence for consistent sex differences in music-induced pupillary responses, with males exhibiting larger differences between responses, but females exhibiting stronger responses overall. These results imply that the biological link between movement and auditory rhythms in our species is supported by the capacity of high-groove music to stimulate arousal in the central and peripheral nervous system, presumably via highly conserved noradrenergic mechanisms.
机译:律动听觉刺激运动的能力在人类中已得到高度发展,而在我们的近亲中却极为有限。听觉运动夹带的一个重要方面是,并非所有形式的节律刺激都能以相同程度激发运动。这种变化被音乐凹槽的概念所捕获:高凹槽音乐激发强烈的运动欲望,而低凹槽音乐则没有。在这里,我们利用这种差异来调查我们听觉运动夹带能力的神经生理基础。在一系列的三个实验中,我们检查了瞳孔对凹槽中音乐刺激的反应。我们的结果表明,响应于(1)高凹槽音乐与低凹槽音乐,(2)高频谱音乐与低频谱音乐,以及(3)锯齿音乐相对于直鼓模式,瞳孔扩张更强。我们还报告了音乐诱发的瞳孔反应中一致的性别差异的证据,其中男性表现出较大的反应差异,而女性表现出总体上较强的反应。这些结果表明,高凹槽音乐刺激中枢神经系统和周围神经系统觉醒的能力支持了我们物种中运动与听觉节奏之间的生物学联系,大概是通过高度保守的去甲肾上腺素能机制。

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