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Real-time semantic compensation in patients with agrammatic comprehension: Electrophysiological evidence for multiple-route plasticity

机译:语法理解患者的实时语义补偿:多途径可塑性的电生理证据

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摘要

To understand spoken language requires that the brain provides rapid access to different kinds of knowledge, including the sounds and meanings of words, and syntax. Syntax specifies constraints on combining words in a grammatically well formed manner. Agrammatic patients are deficient in their ability to use these constraints, due to a lesion in the perisylvian area of the language-dominant hemisphere. We report a study on real-time auditory sentence processing in agrammatic comprehenders, examining their ability to accommodate damage to the language system. We recorded event-related brain potentials (ERPs) in agrammatic comprehenders, nonagrammatic aphasics, and age-matched controls. When listening to sentences with grammatical violations, the agrammatic aphasics did not show the same syntax-related ERP effect as the two other subject groups. Instead, the waveforms of the agrammatic aphasics were dominated by a meaning-related ERP effect, presumably reflecting their attempts to achieve understanding by the use of semantic constraints. These data demonstrate that although agrammatic aphasics are impaired in their ability to exploit syntactic information in real time, they can reduce the consequences of a syntactic deficit by exploiting a semantic route. They thus provide evidence for the compensation of a syntactic deficit by a stronger reliance on another route in mapping sound onto meaning. This is a form of plasticity that we refer to as multiple-route plasticity.
机译:要理解口语,需要大脑提供对各种知识的快速访问,其中包括单词的声音和含义以及语法。语法规定了以语法良好形式组合单词的约束。由于语言占主导地位的半球的边缘周围区域的病变,患有语法障碍的患者缺乏使用这些约束的能力。我们报告了对语法理解者中实时听觉句子处理的研究,考察了它们对语言系统造成损害的能力。我们在语法理解者,非语法失语症患者和年龄匹配的对照者中记录了与事件相关的脑电势(ERP)。在聆听语法违规的句子时,语法失语症没有表现出与其他两个主题组相同的语法相关ERP效果。取而代之的是,语法失语症的波形受与意义相关的ERP效果的支配,大概反映了它们通过使用语义约束来实现理解的尝试。这些数据表明,尽管语法失语症在实时利用句法信息方面的能力受到损害,但它们可以通过利用语义途径来减少句法缺陷的后果。因此,它们为通过将声音映射到意义上而更依赖于另一条路线来弥补句法缺陷提供了证据。这是一种可塑性,我们称为多路可塑性。

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