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首页> 外文期刊>Journal of Cognitive Neuroscience >An Event-related fMRI Study of Artificial Grammar Learning in a Balanced Chunk Strength Design
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An Event-related fMRI Study of Artificial Grammar Learning in a Balanced Chunk Strength Design

机译:基于事件的功能磁共振成像研究平衡块强度设计中的人工语法学习

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摘要

Artificial grammar teaming (Reber, 1967) is a form of implicit learning in which cognitive, rather than motor, implicit learning has been found. After viewing a series of letter strings formed according to a finite state rule system, people are able to classify new letter strings as to whether or not they are formed according to these grammatical rules despite little conscious insight into the rule structure. Previous research has shown that these classification judgments are based on knowledge of abstract rules as well as superficial similarity ("chunk strength") to training strings. Here we used event-related fMRI to identify neural regions involved in using both sources of information as test stimuli were designed to unconfound chunk strength from rule use. Using functional connectivity analyses, the extent to which the sources of information are complementary or competi tive was also assessed. Activation in the right caudate was associated with rule adherence, whereas medial temporal lobe activations were associated with chunk strength. Additionally, functional connectivity analyses revealed caudate and medial temporal lobe activations to be strongly negatively correlated (r = -.88) with one another during the performance of this task.
机译:人工语法分组(Reber,1967)是一种隐性学习的形式,其中发现了认知而不是运动的隐性学习。在查看了根据有限状态规则系统形成的一系列字母字符串之后,尽管很少有意识地洞悉规则结构,人们仍可以对新字母字符串是否按照这些语法规则进行分类进行分类。先前的研究表明,这些分类判断是基于抽象规则的知识以及与训练字符串的表面相似性(“块强度”)。在这里,我们使用事件相关的功能磁共振成像(fMRI)来识别涉及使用两种信息源的神经区域,因为测试刺激旨在消除规则使用中的块强度。使用功能连接性分析,还评估了信息源互补或竞争的程度。右尾状核的激活与规则的依从性相关,而内侧颞叶的激活与块体强度相关。此外,功能连通性分析显示,尾鳍和颞中叶的激活在执行此任务期间彼此之间强烈负相关(r = -.88)。

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