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算术复杂度增加与儿童的一般领域而非特定领域的数量处理相关:一项同步功能近红外光谱-脑电图研究。

Increased arithmetic complexity is associated with domain-general but not domain-specific magnitude processing in children: A simultaneous fNIRS-EEG study.

作者信息

Soltanlou Mojtaba, Artemenko Christina, Dresler Thomas, Haeussinger Florian B, Fallgatter Andreas J, Ehlis Ann-Christine, Nuerk Hans-Christoph

机构信息

Graduate Training Centre of Neuroscience/IMPRS for Cognitive and Systems Neuroscience, Tuebingen, Germany.

Department of Psychology, University of Tuebingen, Schleichstrasse 4, 72076, Tuebingen, Germany.

出版信息

Cogn Affect Behav Neurosci. 2017 Aug;17(4):724-736. doi: 10.3758/s13415-017-0508-x.

Abstract

The investigation of the neural underpinnings of increased arithmetic complexity in children is essential for developing educational and therapeutic approaches and might provide novel measures to assess the effects of interventions. Although a few studies in adults and children have revealed the activation of bilateral brain regions during more complex calculations, little is known about children. We investigated 24 children undergoing one-digit and two-digit multiplication tasks while simultaneously recording functional near-infrared spectroscopy (fNIRS) and electroencephalography (EEG) data. FNIRS data indicated that one-digit multiplication was associated with brain activity in the left superior parietal lobule (SPL) and intraparietal sulcus (IPS) extending to the left motor area, and two-digit multiplication was associated with activity in bilateral SPL, IPS, middle frontal gyrus (MFG), left inferior parietal lobule (IPL), and motor areas. Oscillatory EEG data indicated theta increase and alpha decrease in parieto-occipital sites for both one-digit and two-digit multiplication. The contrast of two-digit versus one-digit multiplication yielded greater activity in right MFG and greater theta increase in frontocentral sites. Activation in frontal areas and theta band data jointly indicate additional domain-general cognitive control and working memory demands for heightened arithmetic complexity in children. The similarity in parietal activation between conditions suggests that children rely on domain-specific magnitude processing not only for two-digit but-in contrast to adults-also for one-digit multiplication problem solving. We conclude that in children, increased arithmetic complexity tested in an ecologically valid setting is associated with domain-general processes but not with alteration of domain-specific magnitude processing.

摘要

探究儿童算术复杂度增加的神经基础对于开发教育和治疗方法至关重要,并且可能提供评估干预效果的新措施。尽管一些针对成人和儿童的研究揭示了在更复杂计算过程中双侧脑区的激活情况,但对于儿童的了解却很少。我们对24名儿童进行了一位数和两位数乘法任务的研究,同时记录功能近红外光谱(fNIRS)和脑电图(EEG)数据。fNIRS数据表明,一位数乘法与左顶上小叶(SPL)和顶内沟(IPS)延伸至左运动区的脑活动相关,而两位数乘法与双侧SPL、IPS、额中回(MFG)、左下顶叶(IPL)和运动区的活动相关。振荡性EEG数据表明,一位数和两位数乘法在顶枕部位均出现θ波增加和α波减少。两位数乘法与一位数乘法的对比显示,右侧MFG有更大的活动,额中央部位有更大的θ波增加。额叶区域的激活和θ波段数据共同表明,儿童算术复杂度提高时,需要额外的领域通用认知控制和工作记忆。不同条件下顶叶激活的相似性表明,儿童不仅在解决两位数乘法问题时依赖领域特定的数量处理,与成人不同的是,在解决一位数乘法问题时也依赖。我们得出结论,在儿童中,在生态有效环境中测试的算术复杂度增加与领域通用过程相关,但与领域特定数量处理的改变无关。

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