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幼儿Stroop任务中运动反应激活与反应竞争的实时追踪:一项偏侧化准备电位研究

Real-time tracking of motor response activation and response competition in a Stroop task in young children: a lateralized readiness potential study.

作者信息

Szucs Dénes, Soltész Fruzsina, Bryce Donna, Whitebread David

机构信息

Faculty of Education, Centre for Neuroscience and Education, University of Cambridge, United Kingdom.

出版信息

J Cogn Neurosci. 2009 Nov;21(11):2195-206. doi: 10.1162/jocn.2009.21220.

Abstract

The ability to select an appropriate motor response by resolving competition among alternative responses plays a major role in cognitive performance. fMRI studies suggest that the development of this skill is related to the maturation of the frontal cortex that underlies the improvement of motor inhibition abilities. However, fMRI cannot characterize the temporal properties of motor response competition and motor activation in general. We studied the development of the time course of resolving motor response competition. To this end, we used the lateralized readiness potential (LRP), an ERP measure, for tracking correct and incorrect motor cortex activation in children in real time. Fourteen children and 14 adults took part in an animal-size Stroop task where they selected between two animals, presented simultaneously on the computer screen, which was larger in real life. In the incongruent condition, the LRP detected stronger and longer lasting incorrect response activation in children than in adults. LRP results could explain behavioral congruency effects, the generally longer RT in children than in adults and the larger congruency effect in children than in adults. In contrast, the peak latency of ERP waves, usually associated with stimulus processing speed, could explain neither of the above effects. We conclude that the development of resolving motor response competition, relying on motor inhibition skills, is a crucial factor in child development. Our study demonstrates that the LRP is an excellent tool for studying motor activation in children.

摘要

通过解决不同反应之间的竞争来选择适当运动反应的能力在认知表现中起着重要作用。功能磁共振成像(fMRI)研究表明,这种技能的发展与额叶皮层的成熟有关,而额叶皮层的成熟是运动抑制能力提高的基础。然而,一般来说,fMRI无法描述运动反应竞争和运动激活的时间特性。我们研究了解决运动反应竞争的时间进程的发展。为此,我们使用了侧化准备电位(LRP),一种事件相关电位(ERP)测量方法,来实时跟踪儿童正确和错误的运动皮层激活情况。14名儿童和14名成年人参与了一项动物大小的Stroop任务,在该任务中,他们要在同时出现在电脑屏幕上的两只动物中进行选择,而这两只动物在现实生活中更大。在不一致条件下,LRP检测到儿童中比成年人更强且持续时间更长的错误反应激活。LRP结果可以解释行为一致性效应、儿童通常比成年人更长的反应时间以及儿童比成年人更大的一致性效应。相比之下,通常与刺激处理速度相关的ERP波的峰值潜伏期无法解释上述任何一种效应。我们得出结论,依靠运动抑制技能来解决运动反应竞争的发展是儿童发育中的一个关键因素。我们的研究表明,LRP是研究儿童运动激活的一种优秀工具。

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