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非线性叙事过程中时间信息的神经解码。

Neural unscrambling of temporal information during a nonlinear narrative.

机构信息

Department of Psychological and Brain Sciences, Dartmouth College, 6207 Moore Hall, Hanover, NH 03755, United States.

出版信息

Cereb Cortex. 2023 May 24;33(11):7001-7014. doi: 10.1093/cercor/bhad015.

Abstract

Although we must experience our lives chronologically, storytellers often manipulate the order in which they relay events. How the brain processes temporal information while encoding a nonlinear narrative remains unclear. Here, we use functional magnetic resonance imaging during movie watching to investigate which brain regions are sensitive to information about time in a narrative and test whether the representation of temporal context across a narrative is more influenced by the order in which events are presented or their underlying chronological sequence. Results indicate that medial parietal regions are sensitive to cued jumps through time over and above other changes in context (i.e., location). Moreover, when processing non-chronological narrative information, the precuneus and posterior cingulate engage in on-the-fly temporal unscrambling to represent information chronologically. Specifically, days that are closer together in chronological time are represented more similarly regardless of when they are presented in the movie, and this representation is consistent across participants. Additional analyses reveal a strong spatial signature associated with higher magnitude jumps through time. These findings are consistent with prior theorizing on medial parietal regions as central to maintaining and updating narrative situation models, and suggest the priority of chronological information when encoding narrative events.

摘要

虽然我们必须按照时间顺序经历生活,但故事讲述者经常操纵他们讲述事件的顺序。大脑在编码非线性叙事时如何处理时间信息尚不清楚。在这里,我们使用观看电影时的功能磁共振成像来研究大脑中哪些区域对叙事中的时间信息敏感,并测试时间上下文在整个叙事中的表示是受呈现事件的顺序影响更大,还是受其潜在的时间顺序影响更大。结果表明,内侧顶叶区域对时间上的提示跳跃敏感,而不仅仅是其他上下文变化(即位置)。此外,在处理非时间顺序的叙事信息时,楔前叶和后扣带回会实时进行时间解缠,以时间顺序表示信息。具体来说,在时间上更接近的日子无论在电影中何时呈现,它们的表示都更加相似,而且这种表示在参与者之间是一致的。进一步的分析揭示了与更大幅度时间跳跃相关的强烈空间特征。这些发现与内侧顶叶区域作为维持和更新叙事情境模型的核心的先前理论一致,并表明在编码叙事事件时,时间信息的优先级更高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9ff/10233248/879a24f81b6d/bhad015f1.jpg

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