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言语韵律传递交际功能的即时神经加工。

Instantaneous neural processing of communicative functions conveyed by speech prosody.

机构信息

Brain Language Laboratory, Department of Philosophy and Humanities, Freie Universität Berlin, 14195 Berlin, Germany.

Cluster of Excellence 'Matters of Activity. Image Space Material', Humboldt Universität zu Berlin, 10099 Berlin, Germany.

出版信息

Cereb Cortex. 2022 Oct 20;32(21):4885-4901. doi: 10.1093/cercor/bhab522.

Abstract

During conversations, speech prosody provides important clues about the speaker's communicative intentions. In many languages, a rising vocal pitch at the end of a sentence typically expresses a question function, whereas a falling pitch suggests a statement. Here, the neurophysiological basis of intonation and speech act understanding were investigated with high-density electroencephalography (EEG) to determine whether prosodic features are reflected at the neurophysiological level. Already approximately 100 ms after the sentence-final word differing in prosody, questions, and statements expressed with the same sentences led to different neurophysiological activity recorded in the event-related potential. Interestingly, low-pass filtered sentences and acoustically matched nonvocal musical signals failed to show any neurophysiological dissociations, thus suggesting that the physical intonation alone cannot explain this modulation. Our results show rapid neurophysiological indexes of prosodic communicative information processing that emerge only when pragmatic and lexico-semantic information are fully expressed. The early enhancement of question-related activity compared with statements was due to sources in the articulatory-motor region, which may reflect the richer action knowledge immanent to questions, namely the expectation of the partner action of answering the question. The present findings demonstrate a neurophysiological correlate of prosodic communicative information processing, which enables humans to rapidly detect and understand speaker intentions in linguistic interactions.

摘要

在对话中,语音韵律为说话者的交际意图提供了重要线索。在许多语言中,句子末尾的音调升高通常表示疑问功能,而音调下降则表示陈述。在这里,通过高密度脑电图 (EEG) 研究了语调与言语行为理解的神经生理学基础,以确定是否在神经生理水平上反映了韵律特征。在句子末尾的单词具有不同的韵律特征后,大约 100 毫秒后,用相同的句子表达的疑问句和陈述句会导致事件相关电位中记录的不同神经生理活动。有趣的是,低通滤波的句子和声学匹配的非声乐音乐信号没有显示出任何神经生理差异,因此表明物理语调本身不能解释这种调制。我们的研究结果表明,只有当语用和词汇语义信息得到充分表达时,才会出现快速的韵律交际信息处理的神经生理指标。与陈述句相比,疑问句相关活动的早期增强归因于发音运动区域的源,这可能反映了疑问句中固有的更丰富的动作知识,即对回答问题的伙伴动作的期望。本研究结果证明了韵律交际信息处理的神经生理学相关性,这使人类能够在语言交互中快速检测和理解说话者的意图。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dff9/9626830/b90c7224218e/bhab522f1.jpg

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