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A robust dissociation among the language multiple demand and default mode networks: evidence from inter-region correlations in effect size

机译:语言多种需求和默认模式网络之间的强大分离:效果范围内区域间相关性的证据

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摘要

Complex cognitive processes, including language, rely on multiple mental operations that are carried out by several large-scale functional networks in the frontal, temporal, and parietal association cortices of the human brain. The central division of cognitive labor is between two fronto-parietal bilateral networks: (a) the multiple demand (MD) network, which supports executive processes, such as working memory and cognitive control, and is engaged by diverse task domains, including language, especially when comprehension gets difficu and (b) the default mode network (DMN), which supports introspective processes, such as mind wandering, and is active when we are not engaged in processing external stimuli. These two networks are strongly dissociated in both their functional profiles and their patterns of activity fluctuations during naturalistic cognition. Here, we focus on the functional relationship between these two networks and a third network: (c) the fronto-temporal left-lateralized “core” language network, which is selectively recruited by linguistic processing. Is the language network distinct and dissociated from both the MD network and the DMN, or is it synchronized and integrated with one or both of them? Recent work has provided evidence for a dissociation between the language network and the MD network. However, the relationship between the language network and the DMN is less clear, with some evidence for coordinated activity patterns and similar response profiles, perhaps due to the role of both in semantic processing. Here we use a novel fMRI approach to examine the relationship among the three networks: we measure the strength of activations in different language, MD, and DMN regions to functional contrasts typically used to identify each network, and then test which regions co-vary in their contrast effect sizes across 60 individuals. We find that effect sizes correlate strongly within each network (e.g., one language region and another language region, or one DMN region and another DMN region), but show little or no correlation for region pairs across networks (e.g., a language region and a DMN region). Thus, using our novel method, we replicate the language/MD network dissociation discovered previously with other approaches, and also show that the language network is robustly dissociated from the DMN, overall suggesting that these three networks contribute to high-level cognition in different ways and, perhaps, support distinct computations. Inter individual differences in effect sizes therefore do not simply reflect general differences in vascularization or attention, but exhibit sensitivity to the functional architecture of the brain. The strength of activation in each network can thus be probed separately in studies that attempt to link neural variability to behavioral or genetic variability.
机译:复杂的认知过程(包括语言)依赖于人脑的额叶,颞叶和顶叶皮质中的几个大型功能网络所进行的多种心理操作。认知劳动的中心划分是在两个额顶双边网络之间:(a)多重需求(MD)网络,该网络支持执行过程,例如工作记忆和认知控制,并且由多种任务域(包括语言,特别是当理解变得困难时; (b)默认模式网络(DMN),它支持内省过程,例如思维游荡,并且在我们不参与处理外部刺激时处于活动状态。这两个网络在自然认知过程中的功能特征和活动波动模式都强烈分离。在这里,我们着眼于这两个网络与第三个网络之间的功能关系:(c)时空的左侧“核心”语言网络,通过语言处理有选择地招募该网络。语言网络是否与MD网络和DMN截然不同并分离,还是与它们之一或两者同步并集成?最近的工作为语言网络和MD网络之间的分离提供了证据。但是,语言网络与DMN之间的关系还不太清楚,有证据表明存在协调的活动模式和类似的响应配置文件,这可能是由于两者在语义处理中的作用所致。在这里,我们使用一种新颖的功能磁共振成像方法来检查这三个网络之间的关系:我们测量不同语言,MD和DMN区域中的激活强度与通常用于识别每个网络的功能对比,然后测试哪个区域在其中共存他们的对比效果影响了60个人。我们发现效果大小在每个网络(例如,一个语言区域和另一种语言区域,或一个DMN区域和另一个DMN区域)内密切相关,但是对于跨网络的区域对(例如,一个语言区域和一个DMN地区)。因此,使用我们的新颖方法,我们可以将以前发现的语言/ MD网络分离与其他方法进行复制,并且还表明该语言网络与DMN有很强的分离性,总体上表明这三个网络以不同的方式有助于高级认知并且也许支持不同的计算。因此,个体间效应大小的差异不仅仅反映血管化或注意力的普遍差异,而且表现出对大脑功能结构的敏感性。因此,可以在尝试将神经变异性与行为或遗传变异性联系起来的研究中分别探究每个网络中激活的强度。

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