Marghetis Tyler, Núñez Rafael, Bergen Benjamin K
a Department of Cognitive Science , UC San Diego , La Jolla , CA , USA.
Q J Exp Psychol (Hove). 2014;67(8):1579-96. doi: 10.1080/17470218.2014.897359. Epub 2014 Mar 19.
Mathematics requires precise inferences about abstract objects inaccessible to perception. How is this possible? One proposal is that mathematical reasoning, while concerned with entirely abstract objects, nevertheless relies on neural resources specialized for interacting with the world-in other words, mathematics may be grounded in spatial or sensorimotor systems. Mental arithmetic, for instance, could involve shifts in spatial attention along a mental "number-line", the product of cultural artefacts and practices that systematically spatialize number and arithmetic. Here, we investigate this hypothesized spatial processing during exact, symbolic arithmetic (e.g., 4 + 3 = 7). Participants added and subtracted single-digit numbers and selected the exact solution from responses in the top corners of a computer monitor. While they made their selections using a computer mouse, we recorded the movement of their hand as indexed by the streaming x, y coordinates of the computer mouse cursor. As predicted, hand movements during addition and subtraction were systematically deflected toward the right and the left, respectively, as if calculation involved simultaneously simulating motion along a left-to-right mental number-line. This spatial-arithmetical bias, moreover, was distinct from-but correlated with-individuals' spatial-numerical biases (i.e., spatial-numerical association of response codes, SNARC, effect). These results are the first evidence that exact, symbolic arithmetic prompts systematic spatial processing associated with mental calculation. We discuss the possibility that mathematical calculation relies, in part, on an integrated system of spatial processes.
数学需要对无法感知的抽象对象进行精确推理。这是如何实现的呢?一种观点认为,数学推理虽然关注的是完全抽象的对象,但仍然依赖于专门用于与世界互动的神经资源——换句话说,数学可能基于空间或感觉运动系统。例如,心算可能涉及沿着心理“数字线”的空间注意力转移,这是文化产物和实践的结果,这些产物和实践将数字和算术系统地空间化。在这里,我们研究在精确的符号算术(例如,4 + 3 = 7)过程中这种假设的空间处理。参与者对个位数进行加减运算,并从电脑显示器右上角的选项中选择正确答案。当他们使用电脑鼠标进行选择时,我们记录他们手部的动作,以电脑鼠标光标的流式x、y坐标为指标。正如预测的那样,加法和减法过程中的手部动作分别系统地偏向右侧和左侧,就好像计算涉及同时模拟沿着从左到右的心理数字线的运动。此外,这种空间算术偏差与个体的空间数字偏差(即反应编码的空间数字关联,SNARC,效应)不同但相关。这些结果是首个证据,表明精确的符号算术会引发与心算相关的系统空间处理。我们讨论了数学计算可能部分依赖于一个空间过程的综合系统的可能性。