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Auditory-Articulatory Neural Alignment between Listener and Speaker during Verbal Communication

机译:口头沟通期间听众和扬声器之间的听觉关节神经对齐

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Whether auditory processing of speech relies on reference to the articulatory motor information of speaker remains elusive. Here, we addressed this issue under a two-brain framework. Functional magnetic resonance imaging was applied to record the brain activities of speakers when telling real-life stories and later of listeners when listening to the audio recordings of these stories. Based on between-brain seed-to-voxel correlation analyses, we revealed that neural dynamics in listeners' auditory temporal cortex are temporally coupled with the dynamics in the speaker's larynx/phonation area. Moreover, the coupling response in listener's left auditory temporal cortex follows the hierarchical organization for speech processing, with response lags in A1+, STG/STS, and MTG increasing linearly. Further, listeners showing greater coupling responses understand the speech better. When comprehension fails, such interbrain auditory-articulation coupling vanishes substantially. These findings suggest that a listener's auditory system and a speaker's articulatory system are inherently aligned during naturalistic verbal interaction, and such alignment is associated with high-level information transfer from the speaker to the listener. Our study provides reliable evidence supporting that references to the articulatory motor information of speaker facilitate speech comprehension under a naturalistic scene.
机译:语音听觉处理是否依赖于扬声器的铰接运动信息仍然难以捉摸。在这里,我们在双重大脑框架下解决了这个问题。施用功能磁共振成像以在聆听这些故事的录音时讲述现实故事和稍后的听众时记录扬声器的大脑活动。基于脑部种子对体素相关性分析,我们透露,听众听觉时颞皮质中的神经动力学与扬声器喉/侦听区域中的动态耦合。此外,听众左听觉时临时Cortex中的耦合响应遵循语音处理的分层组织,在A1 +,STG / STS和MTG中响应延迟线性增加。此外,听众显示出更大的耦合响应了解更好的语音。当理解失败时,这种嵌入听觉铰接偶联显着消失。这些发现表明,在自然主义语言相互作用期间,听众的听觉系统和扬声器的铰接系统本质上对齐,并且这种对准与从扬声器到侦听器的高级信息传输相关联。我们的研究提供了可靠的证据,支持对扬声器的关节运动信息的参考资料促进自然主义现场的言语理解。

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