Opitz Bertram, Friederici Angela D
Department of Psychology, Experimental Neuropsychology Unit, P.O. 151150, Saarland University, D-66041 Saarbrücken, Germany.
Neuroimage. 2003 Aug;19(4):1730-7. doi: 10.1016/s1053-8119(03)00170-8.
One of the most influential views on the hippocampal function suggests that this brain region is critically involved in relational memory processing, that is, binding converging inputs to mediate the representation of relationships among the constituents of episodes. It has been proposed that this binding is automatic and obligatory during learning and remembering In addition, neuroimaging studies have highlighted the importance of the prefrontal cortex, in learning, memory, and language processing. However, the posited importance of hippocampal-prefrontal interaction remains to be empirically tested. In the present study we used functional magnetic resonance imaging to examine in detail this interaction by assessing learning-related changes in hemodynamic activity during artificial language acquisition. It has been shown previously that artificial grammar systems might be learned by evaluating pattern-based relations in word sequences and generalizing beyond specific word order, that is, rule abstraction. During scanning, participants learned an artificial language whose miniature grammar meets the universal principles of a natural language. Increased proficiency level of the artificial language is associated with decreased left hippocampal activity. In contrast, we observed an increased recruitment of the left inferior frontal gyrus (Broca's area), a region that contributes to syntax processing in natural language. The present results, therefore, indicate a learning-related change in brain circuitry underlying relational processes of language learning, with a transition from a similarity-based learning system in the medial temporal lobes to a language-related processing system in the left prefrontal cortex.
关于海马体功能最具影响力的观点之一认为,这个脑区在关系记忆处理中起着关键作用,也就是说,它将汇聚的输入信息结合起来,以介导事件组成部分之间关系的表征。有人提出,这种结合在学习和记忆过程中是自动且必然发生的。此外,神经影像学研究强调了前额叶皮质在学习、记忆和语言处理中的重要性。然而,海马体与前额叶之间相互作用的假定重要性仍有待实证检验。在本研究中,我们使用功能磁共振成像,通过评估人工语言习得过程中与学习相关的血液动力学活动变化,来详细研究这种相互作用。先前的研究表明,人工语法系统可以通过评估单词序列中基于模式的关系并超越特定的词序进行概括来学习,也就是规则抽象。在扫描过程中,参与者学习一种人工语言,其微型语法符合自然语言的普遍原则。人工语言熟练程度的提高与左侧海马体活动的减少有关。相反,我们观察到左侧额下回(布洛卡区)的激活增加,该区域在自然语言的句法处理中发挥作用。因此,本研究结果表明,语言学习关系过程背后的大脑回路存在与学习相关的变化,即从内侧颞叶基于相似性的学习系统转变为左侧前额叶皮质与语言相关的处理系统。