The Same Ultra-Rapid Parallel Brain Dynamics Underpin the Production and Perception of Speech.

Cerebral cortex communications Pub Date : 2021-06-10 eCollection Date: 2021-01-01 DOI:10.1093/texcom/tgab040
Amie Fairs, Amandine Michelas, Sophie Dufour, Kristof Strijkers
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Abstract

The temporal dynamics by which linguistic information becomes available is one of the key properties to understand how language is organized in the brain. An unresolved debate between different brain language models is whether words, the building blocks of language, are activated in a sequential or parallel manner. In this study, we approached this issue from a novel perspective by directly comparing the time course of word component activation in speech production versus perception. In an overt object naming task and a passive listening task, we analyzed with mixed linear models at the single-trial level the event-related brain potentials elicited by the same lexico-semantic and phonological word knowledge in the two language modalities. Results revealed that both word components manifested simultaneously as early as 75 ms after stimulus onset in production and perception; differences between the language modalities only became apparent after 300 ms of processing. The data provide evidence for ultra-rapid parallel dynamics of language processing and are interpreted within a neural assembly framework where words recruit the same integrated cell assemblies across production and perception. These word assemblies ignite early on in parallel and only later on reverberate in a behavior-specific manner.

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同样的超快速并行大脑动力支撑着语音的产生和感知。
语言信息的时间动态变化是了解大脑如何组织语言的关键特性之一。不同大脑语言模型之间的一个悬而未决的争论点是,语言的组成部分--单词是以顺序还是并行的方式被激活的。在这项研究中,我们从一个新颖的角度探讨了这一问题,直接比较了语音生成和感知中单词成分激活的时间过程。在一个公开的物体命名任务和一个被动的听力任务中,我们使用混合线性模型在单次试验水平上分析了在两种语言模式中相同的词汇语义和语音单词知识所引起的事件相关脑电位。结果显示,早在刺激开始后 75 毫秒,这两个词的成分就同时出现在生产和感知中;语言模式之间的差异只有在处理 300 毫秒后才变得明显。这些数据为语言处理的超快速并行动力学提供了证据,并在神经集合框架内进行了解释。这些单词集合在早期就开始并行启动,之后才以特定行为的方式产生反响。
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