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听觉皮层中的θ-γ 相位-幅度耦合受语言熟练度的调节。

Theta-gamma phase-amplitude coupling in auditory cortex is modulated by language proficiency.

机构信息

BCBL, Basque center on Cognition, Brain and Language, San Sebastian, Spain.

Laboratoire de Sciences Cognitives et Psycholinguistique, Département d'Etudes Cognitives, Ecole Normale Supérieure, EHESS, CNRS, PSL University, Paris, France.

出版信息

Hum Brain Mapp. 2023 May;44(7):2862-2872. doi: 10.1002/hbm.26250. Epub 2023 Feb 27.

Abstract

The coordination between the theta phase (3-7 Hz) and gamma power (25-35 Hz) oscillations (namely theta-gamma phase-amplitude coupling, PAC) in the auditory cortex has been proposed as an essential neural mechanism involved in speech processing. However, it has not been established how this mechanism is related to the efficiency with which a listener processes speech. Speech processing in a non-native language offers a useful opportunity to evaluate if theta-gamma PAC is modulated by the challenges imposed by the reception of speech input in a non-native language. The present study investigates how auditory theta-gamma PAC (recorded with magnetoencephalography) is modulated in both native and non-native speech reception. Participants were Spanish native (L1) speakers studying Basque (L2) at three different levels: beginner (Grade 1), intermediate (Grade 2), and advanced (Grade 3). We found that during L2 speech processing (i) theta-gamma PAC was more highly coordinated for intelligible compared to unintelligible speech; (ii) this coupling was modulated by proficiency in Basque being lower for beginners, higher for intermediate, and highest for advanced speakers (no difference observed in Spanish); (iii) gamma power did not differ between languages and groups. These findings highlight how the coordinated theta-gamma oscillatory activity is tightly related to speech comprehension: the stronger this coordination is, the more the comprehension system will proficiently parse the incoming speech input.

摘要

听觉皮层中的θ相位(3-7 Hz)和γ功率(25-35 Hz)振荡之间的协调(即θ-γ相位-幅度耦合,PAC)被提出是参与言语处理的重要神经机制。然而,尚未确定这种机制与听众处理言语的效率有何关系。非母语的言语处理提供了一个有用的机会,可以评估θ-γ PAC 是否受到接收非母语言语输入所带来的挑战的调节。本研究调查了听觉θ-γ PAC(通过脑磁图记录)在母语和非母语言语接收中是如何被调节的。参与者为西班牙语母语(L1)者,学习巴斯克语(L2),分为三个不同的水平:初学者(一年级)、中级(二年级)和高级(三年级)。我们发现,在 L2 言语处理过程中:(i)与无法理解的言语相比,可理解的言语的θ-γ PAC 协调性更高;(ii)这种耦合受巴斯克语熟练程度的调节,初学者的耦合程度较低,中级的耦合程度较高,高级的耦合程度最高(在西班牙语中没有观察到差异);(iii)γ功率在两种语言和组别之间没有差异。这些发现强调了协调的θ-γ 振荡活动与言语理解之间的紧密关系:这种协调越强,理解系统就越能熟练地解析输入的言语输入。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85e3/10089097/ec72880319d5/HBM-44-2862-g003.jpg

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