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数学推理中的隐喻性运动:抽象领域中结构映射的运动前实现的进一步证据。

Metaphorical motion in mathematical reasoning: further evidence for pre-motor implementation of structure mapping in abstract domains.

作者信息

Fields Chris

出版信息

Cogn Process. 2013 Aug;14(3):217-29. doi: 10.1007/s10339-013-0555-3. Epub 2013 Mar 5.

Abstract

The theory of computation and category theory both employ arrow-based notations that suggest that the basic metaphor "state changes are like motions" plays a fundamental role in all mathematical reasoning involving formal manipulations. If this is correct, structure-mapping inferences implemented by the pre-motor action planning system can be expected to be involved in solving any mathematics problems not solvable by table lookups and number line manipulations alone. Available functional imaging studies of multi-digit arithmetic, algebra, geometry and calculus problem solving are consistent with this expectation.

摘要

计算理论和范畴论都采用基于箭头的表示法,这表明基本隐喻“状态变化就像运动”在所有涉及形式操作的数学推理中都起着基础性作用。如果这是正确的,那么可以预期由运动前动作规划系统实现的结构映射推理会参与解决任何仅靠查表和数轴操作无法解决的数学问题。现有的关于多位数算术、代数、几何和微积分问题解决的功能成像研究与这一预期相符。

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