Kepinska Olga, de Rover Mischa, Caspers Johanneke, Schiller Niels O
Leiden University Centre for Linguistics, Postbus 9515, 2300 RA Leiden, The Netherlands; Leiden Institute for Brain and Cognition, c/o LUMC, Postzone C2-S, P.O.Box 9600, 2300 RC Leiden, The Netherlands.
Leiden Institute for Brain and Cognition, c/o LUMC, Postzone C2-S, P.O.Box 9600, 2300 RC Leiden, The Netherlands; Department of Anesthesiology, Leiden University Medical Center, Postzone P5-Q, P.O.Box 9600, 2300 RC Leiden, The Netherlands; Faculty of Social Sciences, Institute of Psychology, Clinical Psychology Unit, Pieter de la Court gebouw, Wassenaarseweg 52, 2333 AK Leiden, The Netherlands.
Neuropsychologia. 2017 Apr;98:156-168. doi: 10.1016/j.neuropsychologia.2016.06.014. Epub 2016 Jun 12.
We examine the role of language analytical ability, one of the components of language aptitude - a specific ability for learning languages - during acquisition of a novel grammar. We investigated whether the neural basis of Artificial Grammar Learning (AGL) differs between populations of highly and moderately skilled learners. Participants performed an AGL task during an fMRI scan and data from task's test phases were analysed. Highly skilled learners performed better than moderately skilled ones and engaged during the task more neural resources in the right hemisphere, i.e. in the right angular/supramarginal gyrus and superior frontal and middle frontal gyrus and in the posterior cingulate gyrus. Additional analyses investigating the temporal dynamics of brain activity during learning revealed lateralisation differences in the modulation of activity in the parietal and temporal cortex. In particular, the left angular gyrus BOLD activity was coupled with high performance on the AGL task and with a steep learning curve.
我们研究了语言分析能力(语言能力的组成部分之一,即学习语言的特定能力)在新语法习得过程中的作用。我们调查了高技能学习者群体和中等技能学习者群体在人工语法学习(AGL)的神经基础上是否存在差异。参与者在功能磁共振成像(fMRI)扫描期间执行AGL任务,并对任务测试阶段的数据进行了分析。高技能学习者比中等技能学习者表现更好,并且在任务执行过程中在右半球动用了更多神经资源,即右侧角回/缘上回、额上回和额中回以及后扣带回。进一步分析学习过程中大脑活动的时间动态,结果显示顶叶和颞叶皮质活动调制存在偏侧化差异。特别是,左侧角回的血氧水平依赖(BOLD)活动与AGL任务的高表现以及陡峭的学习曲线相关联。