比较了听、说、轻声、想象四种说话模式的脑电节律差异。
Distinct Theta Synchrony across Speech Modes: Perceived, Spoken, Whispered, and Imagined
- 通过连接度分析不同说话模式的theta波同步特征。
- 真实说话和轻声说话有广泛前颞区同步,想象说话则集中在前额叶。
- 揭示语言感知与内心说话的神经机制差异,适合脑机接口研究者参考。
人类语言产生包含感知、外显、轻声和想象等多种模式,各自反映不同的神经机制。其中,theta频段同步与语言处理、注意力控制及内心言语密切相关。然而,以往研究多集中于单一模式(如外显说话),较少系统比较不同说话模式下的theta同步差异。本研究基于连通性指标,分析各模式在区域层面的theta波同步特征。结果表明:外显与轻声说话表现出更广且更强的前颞区同步,反映主动发音-音位耦合;感知说话则以后部和颞区同步为主,符合听觉感知与理解过程;而想象说话呈现空间局限但内部一致的同步模式,主要涉及额叶与辅助运动区。研究发现,不同模式下theta同步的范围与分布显著不同:外显发音引发广泛皮层互动,轻声说话为中间状态,感知依赖主要颞顶网络。该研究揭示了语言感知与想象言语的共享与独特神经动态。
原文摘要 · Abstract (English)
Human speech production encompasses multiple modes such as perceived, overt, whispered, and imagined, each reflecting distinct neural mechanisms. Among these, theta-band synchrony has been closely associated with language processing, attentional control, and inner speech. However, previous studies have largely focused on a single mode, such as overt speech, and have rarely conducted an integrated comparison of theta synchrony across different speech modes. In this study, we analyzed differences in theta-band neural synchrony across speech modes based on connectivity metrics, focusing on region-wise variations. The results revealed that overt and whispered speech exhibited broader and stronger frontotemporal synchrony, reflecting active motor-phonological coupling during overt articulation, whereas perceived speech showed dominant posterior and temporal synchrony patterns, consistent with auditory perception and comprehension processes. In contrast, imagined speech demonstrated a more spatially confined but internally coherent synchronization pattern, primarily involving frontal and supplementary motor regions. These findings indicate that the extent and spatial distribution of theta synchrony differ substantially across modes, with overt articulation engaging widespread cortical interactions, whispered speech showing intermediate engagement, and perception relying predominantly on temporoparietal networks. Therefore, this study aims to elucidate the differences in theta-band neural synchrony across various speech modes, thereby uncovering both the shared and distinct neural dynamics underlying language perception and imagined speech.
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