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听觉系统中的振荡及其可能的作用。

Oscillations in the auditory system and their possible role.

作者信息

Gourévitch Boris, Martin Claire, Postal Olivier, Eggermont Jos J

机构信息

Institut de l'Audition, Institut Pasteur, INSERM, F-75012, Paris, France; CNRS, France.

Unité de Biologie Fonctionnelle et Adaptative UMR 8251, Université de Paris CNRS, F-75205, Paris, France; CNRS, France.

出版信息

Neurosci Biobehav Rev. 2020 Jun;113:507-528. doi: 10.1016/j.neubiorev.2020.03.030. Epub 2020 Apr 13.

DOI:10.1016/j.neubiorev.2020.03.030
PMID:32298712
Abstract

GOURÉVITCH, B., C. Martin, O. Postal, J.J. Eggermont. Oscillations in the auditory system, their possible role. NEUROSCI BIOBEHAV REV XXX XXX-XXX, 2020. - Neural oscillations are thought to have various roles in brain processing such as, attention modulation, neuronal communication, motor coordination, memory consolidation, decision-making, or feature binding. The role of oscillations in the auditory system is less clear, especially due to the large discrepancy between human and animal studies. Here we describe many methodological issues that confound the results of oscillation studies in the auditory field. Moreover, we discuss the relationship between neural entrainment and oscillations that remains unclear. Finally, we aim to identify which kind of oscillations could be specific or salient to the auditory areas and their processing. We suggest that the role of oscillations might dramatically differ between the primary auditory cortex and the more associative auditory areas. Despite the moderate presence of intrinsic low frequency oscillations in the primary auditory cortex, rhythmic components in the input seem crucial for auditory processing. This allows the phase entrainment between the oscillatory phase and rhythmic input, which is an integral part of stimulus selection within the auditory system.

摘要

古列维奇,B.,C. 马丁,O. 波斯塔尔,J.J. 埃格蒙特。听觉系统中的振荡及其可能的作用。《神经科学与生物行为评论》XXX XXX - XXX,2020年。——神经振荡被认为在大脑处理过程中具有多种作用,如注意力调节、神经元通信、运动协调、记忆巩固、决策或特征绑定。振荡在听觉系统中的作用尚不清楚,尤其是由于人类和动物研究之间存在很大差异。在这里,我们描述了许多混淆听觉领域振荡研究结果的方法学问题。此外,我们讨论了神经夹带与振荡之间仍不明确的关系。最后,我们旨在确定哪种振荡可能对听觉区域及其处理具有特异性或显著性。我们认为,振荡在初级听觉皮层和更多联合听觉区域的作用可能有显著差异。尽管初级听觉皮层中存在适度的内在低频振荡,但输入中的节律成分似乎对听觉处理至关重要。这允许振荡相位与节律输入之间的相位夹带,这是听觉系统内刺激选择的一个组成部分。

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