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大鼠的自发搏动同步:神经动力学与运动同步

Spontaneous beat synchronization in rats: Neural dynamics and motor entrainment.

作者信息

Ito Yoshiki, Shiramatsu Tomoyo Isoguchi, Ishida Naoki, Oshima Karin, Magami Kaho, Takahashi Hirokazu

机构信息

Graduate School of Information Science and Technology, The University of Tokyo, Bunkyo-ku, Tokyo, Japan.

出版信息

Sci Adv. 2022 Nov 11;8(45):eabo7019. doi: 10.1126/sciadv.abo7019.

Abstract

Beat perception and synchronization within 120 to 140 beats/min (BPM) are common in humans and frequently used in music composition. Why beat synchronization is uncommon in some species and the mechanism determining the optimal tempo are unclear. Here, we examined physical movements and neural activities in rats to determine their beat sensitivity. Close inspection of head movements and neural recordings revealed that rats displayed prominent beat synchronization and activities in the auditory cortex within 120 to 140 BPM. Mathematical modeling suggests that short-term adaptation underlies this beat tuning. Our results support the hypothesis that the optimal tempo for beat synchronization is determined by the time constant of neural dynamics conserved across species, rather than the species-specific time constant of physical movements. Thus, latent neural propensity for auditory motor entrainment may provide a basis for human entrainment that is much more widespread than currently thought. Further studies comparing humans and animals will offer insights into the origins of music and dancing.

摘要

在120至140次/分钟(BPM)范围内的节拍感知与同步在人类中很常见,并且在音乐创作中经常被使用。为何节拍同步在某些物种中不常见以及决定最佳节奏的机制尚不清楚。在此,我们研究了大鼠的身体运动和神经活动,以确定它们的节拍敏感性。对头运动和神经记录的仔细检查表明,大鼠在120至140 BPM范围内表现出明显的节拍同步以及听觉皮层的活动。数学建模表明,短期适应性是这种节拍调谐的基础。我们的结果支持以下假设:节拍同步的最佳节奏是由跨物种保守的神经动力学时间常数决定的,而不是由特定物种的身体运动时间常数决定的。因此,听觉运动夹带的潜在神经倾向可能为人类夹带提供一个基础,其范围比目前认为的要广泛得多。比较人类和动物的进一步研究将为音乐和舞蹈的起源提供见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33b9/9651867/d234d3ed2155/sciadv.abo7019-f1.jpg

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