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与代数和几何中从视觉表示转换为符号表示相关的大脑活动。

Brain activity associated with translation from a visual to a symbolic representation in algebra and geometry.

作者信息

Leikin Mark, Waisman Ilana, Shaul Shelley, Leikin Roza

机构信息

RANGE Center, Laboratory for "Neuro-Cognitive Examination of Giftedness", Faculty of Education, University of Haifa, Mount Carmel, Haifa 31905, Israel.

出版信息

J Integr Neurosci. 2014 Mar;13(1):35-59. doi: 10.1142/S0219635214500034. Epub 2014 Mar 25.

Abstract

This paper presents a small part of a larger interdisciplinary study that investigates brain activity (using event related potential methodology) of male adolescents when solving mathematical problems of different types. The study design links mathematics education research with neurocognitive studies. In this paper we performed a comparative analysis of brain activity associated with the translation from visual to symbolic representations of mathematical objects in algebra and geometry. Algebraic tasks require translation from graphical to symbolic representation of a function, whereas tasks in geometry require translation from a drawing of a geometric figure to a symbolic representation of its property. The findings demonstrate that electrical activity associated with the performance of geometrical tasks is stronger than that associated with solving algebraic tasks. Additionally, we found different scalp topography of the brain activity associated with algebraic and geometric tasks. Based on these results, we argue that problem solving in algebra and geometry is associated with different patterns of brain activity.

摘要

本文呈现了一项规模更大的跨学科研究的一小部分内容,该研究使用事件相关电位方法,探究男性青少年在解决不同类型数学问题时的大脑活动。该研究设计将数学教育研究与神经认知研究联系起来。在本文中,我们对代数和几何中数学对象从视觉表示转换为符号表示时相关的大脑活动进行了对比分析。代数任务要求将函数的图形表示转换为符号表示,而几何任务则要求将几何图形的绘图转换为其属性的符号表示。研究结果表明,与执行几何任务相关的电活动比与解决代数任务相关的电活动更强。此外,我们发现与代数和几何任务相关的大脑活动在头皮上具有不同的地形图。基于这些结果,我们认为代数和几何中的问题解决与不同的大脑活动模式相关。

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