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Narrative comprehension beyond language: Common brain networks activated by a movie and its script

机译:超越语言的叙事理解:电影及其剧本激活的普通大脑网络

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摘要

Narratives surround us in our everyday life in different forms. In the sensory brain areas, the processing of narratives is dependent on the media of presentation, be that in audiovisual or written form. However, little is known of the brain areas that process complex narrative content mediated by various forms. To isolate these regions, we looked for the functional networks reacting in a similar manner to the same narrative content despite different media of presentation. We collected 3-T fMRI whole brain data from 31 healthy human adults during two separate runs when they were either viewing a movie or reading its screenplay text. The independent component analysis (ICA) was used to separate 40 components. By correlating the components’ time-courses between the two different media conditions, we could isolate 5 functional networks that particularly related to the same narrative content. These TOP-5 components with the highest correlation covered fronto-temporal, parietal, and occipital areas with no major involvement of primary visual or auditory cortices. Interestingly, the top-ranked network with highest modality-invariance also correlated negatively with the dialogue predictor, thus pinpointing that narrative comprehension entails processes that are not language-reliant. In summary, our novel experiment design provided new insight into narrative comprehension networks across modalities.
机译:叙事以不同的形式围绕着我们的日常生活。在感觉大脑区域,叙述的处理取决于呈现媒体,无论是视听形式还是书面形式。但是,人们对处理由各种形式介导的复杂叙述内容的大脑区域知之甚少。为了隔离这些区域,我们寻求功能网络以相似的方式对相同的叙述内容做出反应,尽管呈现的媒体不同。当他们观看电影或阅读其剧本文本时,我们在两次单独的运行中收集了来自31位健康成年人的3-T fMRI全脑数据。独立成分分析(ICA)用于分离40个成分。通过关联两种不同媒体条件之间组件的时程,我们可以分离出5个与相同叙述内容特别相关的功能网络。这些具有最高相关性的TOP-5成分涵盖额颞叶,顶叶和枕叶区域,而主要的视觉或听觉皮层没有大的参与。有趣的是,具有最高模态不变性的排名最高的网络也与对话预测变量负相关,从而指出叙事理解需要不依赖语言的过程。总而言之,我们新颖的实验设计为跨模式的叙事理解网络提供了新的见解。

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