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PNAS Plus: Coupled neural systems underlie the production and comprehension of naturalistic narrative speech

机译:PNAS Plus:耦合的神经系统是自然主义叙事语言的产生和理解的基础

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摘要

Neuroimaging studies of language have typically focused on either production or comprehension of single speech utterances such as syllables, words, or sentences. In this study we used a new approach to functional MRI acquisition and analysis to characterize the neural responses during production and comprehension of complex real-life speech. First, using a time-warp based intrasubject correlation method, we identified all areas that are reliably activated in the brains of speakers telling a 15-min-long narrative. Next, we identified areas that are reliably activated in the brains of listeners as they comprehended that same narrative. This allowed us to identify networks of brain regions specific to production and comprehension, as well as those that are shared between the two processes. The results indicate that production of a real-life narrative is not localized to the left hemisphere but recruits an extensive bilateral network, which overlaps extensively with the comprehension system. Moreover, by directly comparing the neural activity time courses during production and comprehension of the same narrative we were able to identify not only the spatial overlap of activity but also areas in which the neural activity is coupled across the speaker’s and listener’s brains during production and comprehension of the same narrative. We demonstrate widespread bilateral coupling between production- and comprehension-related processing within both linguistic and nonlinguistic areas, exposing the surprising extent of shared processes across the two systems.
机译:语言的神经影像研究通常集中于产生或理解单个语音的发音,例如音节,单词或句子。在这项研究中,我们使用一种新的方法进行功能性MRI采集和分析,以表征复杂的真实语音的产生和理解过程中的神经反应。首先,使用基于时间扭曲的主题内相关方法,我们确定了讲者大脑中被可靠激活的所有区域,讲述了15分钟的叙述。接下来,当听众理解相同的叙述时,我们确定了在听众大脑中可靠激活的区域。这使我们能够识别特定于生产和理解的大脑区域网络,以及这两个过程之间共享的区域。结果表明,真实生活叙事的产生并不局限于左半球,而是招募了广泛的双边网络,该网络与理解系统广泛重叠。此外,通过直接比较同一叙述的产生和理解过程中的神经活动时间进程,我们不仅能够识别活动的空间重叠,而且还能识别在产生和理解过程中神经活动跨越说话者和听者的大脑耦合的区域。相同的叙述。我们展示了语言和非语言领域内与生产和理解相关的处理之间广泛的双边耦合,从而揭示了两个系统之间共享过程的惊人程度。

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