首页> 外文期刊>Journal of Neurophysiology >Parallel distributed networks dissociate episodic and social functions within the individual.
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Parallel distributed networks dissociate episodic and social functions within the individual.

机译:并行分布式网络在个人内解散了情节和社会功能。

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摘要

Association cortex is organized into large-scale distributed networks. One such network, the default network (DN), is linked to diverse forms of internal mentation, opening debate about whether shared or distinct anatomy supports multiple forms of cognition. Using within-individual analysis procedures that preserve idiosyncratic anatomical details, we probed whether multiple tasks from two domains, episodic projection and theory of mind (ToM), rely on the same or distinct networks. In an initial experiment (6 subjects, each scanned 4 times), we found evidence that episodic projection and ToM tasks activate separate regions distributed throughout the cortex, with adjacent regions in parietal, temporal, prefrontal, and midline zones. These distinctions were predicted by the hypothesis that the DN comprises two parallel, interdigitated networks. One network, linked to parahippocampal cortex (PHC), is preferentially recruited during episodic projection, including both remembering and imagining the future. A second juxtaposed network, which includes the temporoparietal junction (TPJ), is differentially engaged during multiple forms of ToM. In two prospectively acquired independent experiments, we replicated and triplicated the dissociation (each with 6 subjects scanned 4 times). Furthermore, the dissociation was found in all zones when analyzed independently, including robustly in midline regions previously described as hubs. The TPJ-linked network is interwoven with the PHC-linked network across the cortex, making clear why it is difficult to fully resolve the two networks in group-averaged or lower-resolution data. These results refine our understanding of the functional-anatomical organization of association cortex and raise fundamental questions about how specialization might arise in parallel, juxtaposed association networks. NEW & NOTEWORTHY Two distributed, interdigitated networks exist within the bounds of the canonical default network. Here we used repeated scanning of individuals, across three independent samples, to provide evidence that tasks requiring episodic projection or theory of mind differentially recruit the two networks across multiple cortical zones. The two distributed networks thus appear to preferentially subserve distinct functions.
机译:协会皮质被组织到大型分布式网络。一个这样的网络中,默认网络(DN),被连接到内部心理状态的各种形式,开放辩论左右是否共享的或不同的解剖结构支持认知的多种形式。内,个人认为保持特质解剖细节分析过程中使用,我们探讨是否来自两个领域,情景投影和心理理论(TOM)多任务,依靠相同或不同的网络。在初始实验中(6名受试者,每个被扫描的4次),我们发现的证据表明,偶发投影和Tom任务激活整个皮质分布分开的区域,相邻区域在顶叶,颞叶,前额叶,和中线区。这些区别是由假设,即DN包括两个平行,相互交叉的网络预测。一个网络,联系到海马旁皮质(PHC),偶发投影过程中优先招募,包括记忆,想象未来。第二并列网络,包括颞交界(TPJ),在心理理论多种形式被差分接合。两个预期获得独立的实验中,我们复制和三重的解离(每个6名受试者扫描4次)。此外,当独立地分析,在先前被描述为集线器中线区域鲁棒地包括解离在所有区域中找到。该TPJ联网络交织着整个皮质PHC联网络,明确为什么它是很难完全解决组平均或降低分辨率的数据的两个网络。这些结果改进我们联合皮层的功能解剖组织的理解,提高对如何专业化可能会并行,并列协会网络出现的根本问题。规范的默认网络的范围内存在的新的和值得注意的两个分布,相互交叉的网络。在这里,我们用个人的重复扫描,在三个独立的样品,提供证据,要求幕投影或心理理论任务差异招收跨多个皮质区的两个网络。因此两个分布式网络出现,以优先对...有用不同的功能。

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