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The Small and Efficient Language Network of Polyglots and Hyper-polyglots

机译:小型高效的多胶语言网络和超高胶凝

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Acquiring a foreign language is challenging for many adults. Yet certain individuals choose to acquire sometimes dozens of languages and often just for fun. Is there something special about the minds and brains of such polyglots? Using robust individual-level markers of language activity, measured with fMRI, we compared native language processing in polyglots versus matched controls. Polyglots (n=17, including nine "hyper-polyglots" with proficiency in 10-55 languages) used fewer neural resources to process language: Their activations were smaller in both magnitude and extent. This difference was spatially and functionally selective: The groups were similar in their activation of two other brain networks-the multiple demand network and the default mode network. We hypothesize that the activation reduction in the language network is experientially driven, such that the acquisition and use of multiple languages makes language processing generally more efficient. However, genetic and longitudinal studies will be critical to distinguish this hypothesis from the one whereby polyglots' brains already differ at birth or early in development. This initial characterization of polyglots' language network opens the door to future investigations of the cognitive and neural architecture of individuals who gain mastery of multiple languages, including changes in this architecture with linguistic experiences.
机译:对许多成年人来说,掌握一门外语是一项挑战。然而,有些人有时选择学习几十种语言,而且往往只是为了好玩。这种多语言的人的头脑和大脑有什么特别的地方吗?使用功能磁共振成像(fMRI)测量的强大的语言活动个体水平标记,我们比较了多语言区与匹配对照组的母语处理。多语言文字组(n=17,包括9个精通10-55种语言的“超多语言文字组”)使用较少的神经资源来处理语言:它们的激活幅度和程度都较小。这种差异在空间和功能上是有选择性的:两组人在激活另外两个大脑网络——多需求网络和默认模式网络——方面相似。我们假设语言网络中的激活减少是由经验驱动的,因此多种语言的习得和使用通常会提高语言处理的效率。然而,基因和纵向研究将是区分这一假说与多克隆人的大脑在出生或发育早期就已经存在差异的假说的关键。这种对多语言语言网络的初步描述为未来研究掌握多种语言的个体的认知和神经结构打开了大门,包括这种结构随语言经验的变化。

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