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早产儿大脑中的节律:听觉节奏和节拍的极早期处理。

Rhythm in the Premature Neonate Brain: Very Early Processing of Auditory Beat and Meter.

机构信息

Institut National de la Santé et de la Recherche Médicale, Unité Mixte de Recherche 1105, Groupe de Recherches sur l'Analyse Multimodale de la Fonction Cérébrale, Université de Picardie, 80054 Amiens, France.

Electrical Engineering Department, Ferdowsi University of Mashhad, 9177948974 Mashhad, Iran.

出版信息

J Neurosci. 2023 Apr 12;43(15):2794-2802. doi: 10.1523/JNEUROSCI.1100-22.2023. Epub 2023 Mar 13.

Abstract

The ability to extract rhythmic structure is important for the development of language, music, and social communication. Although previous studies show infants' brains entrain to the periodicities of auditory rhythms and even different metrical interpretations (e.g., groups of two vs three beats) of ambiguous rhythms, whether the premature brain tracks beat and meter frequencies has not been explored previously. We used high-resolution electroencephalography while premature infants ( = 19, 5 male; mean age, 32 ± 2.59 weeks gestational age) heard two auditory rhythms in the incubators. We observed selective enhancement of the neural response at both beat- and meter-related frequencies. Further, neural oscillations at the beat and duple (groups of 2) meter were phase aligned with the envelope of the auditory rhythmic stimuli. Comparing the relative power at beat and meter frequencies across stimuli and frequency revealed evidence for selective enhancement of duple meter. This suggests that even at this early stage of development, neural mechanisms for processing auditory rhythms beyond simple sensory coding are present. Our results add to a few previous neuroimaging studies demonstrating discriminative auditory abilities of premature neural networks. Specifically, our results demonstrate the early capacities of the immature neural circuits and networks to code both simple beat and beat grouping (i.e., hierarchical meter) regularities of auditory sequences. Considering the importance of rhythm processing for acquiring language and music, our findings indicate that even before birth, the premature brain is already learning this important aspect of the auditory world in a sophisticated and abstract way. Processing auditory rhythm is of great neurodevelopmental importance. In an electroencephalography experiment in premature newborns, we found converging evidence that when presented with auditory rhythms, the premature brain encodes multiple periodicities corresponding to beat and beat grouping (meter) frequencies, and even selectively enhances the neural response to meter compared with beat, as in human adults. We also found that the phase of low-frequency neural oscillations aligns to the envelope of the auditory rhythms and that this phenomenon becomes less precise at lower frequencies. These findings demonstrate the initial capacities of the developing brain to code auditory rhythm and the importance of special care to the auditory environment of this vulnerable population during a highly dynamic period of neural development.

摘要

提取节奏结构的能力对语言、音乐和社会交流的发展很重要。尽管先前的研究表明,婴儿的大脑会与听觉节奏的周期性产生同步,甚至会对模棱两可节奏的不同韵律解释(例如,两组两拍或三组拍)产生同步,但是之前尚未探讨过早产儿的大脑是否会跟踪节拍和拍子的频率。我们使用高分辨率脑电图,同时让早产儿(= 19 名,男性 5 名;平均年龄 32 ± 2.59 周胎龄)在孵化器中听两种听觉节奏。我们观察到在与节拍和拍子(两组两拍)相关的频率处,神经反应都得到了选择性增强。此外,在听觉节奏刺激的包络上,节拍和双拍子(两组两拍)的神经振荡相位与听觉节奏刺激的包络对齐。通过比较跨刺激和频率的节拍和拍子频率的相对功率,证明了双拍子的选择性增强。这表明,即使在发育的这个早期阶段,处理听觉节奏的神经机制也不仅仅是简单的感觉编码。我们的研究结果增加了一些先前的神经影像学研究,这些研究证明了早产儿神经网络的辨别听觉能力。具体来说,我们的结果证明了不成熟的神经回路和网络在编码听觉序列的简单节拍和节拍分组(即层次拍子)规则方面的早期能力。考虑到节奏处理对语言和音乐的获取的重要性,我们的发现表明,即使在出生前,早产儿的大脑已经以复杂而抽象的方式学习了听觉世界的这一重要方面。处理听觉节奏对神经发育非常重要。在对早产儿进行的脑电图实验中,我们发现了一致的证据,即当呈现听觉节奏时,早产儿的大脑会编码多个对应于节拍和节拍分组(拍子)频率的周期性,并且甚至与节拍相比,会选择性地增强对拍子的神经反应,就像人类成年人一样。我们还发现,低频神经振荡的相位与听觉节奏的包络对齐,并且这种现象在较低频率下变得不那么精确。这些发现证明了发育中大脑对听觉节奏进行编码的初始能力,以及在神经发育高度动态时期特别注意这一脆弱人群的听觉环境的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7346/10089239/fc419844b4bf/SN-JNSJ230164F001.jpg

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