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阿拉伯数字与近似数量之间映射的可塑性:个体差异的潜在因素及其与数学的关系。

Malleability of mappings between Arabic numerals and approximate quantities: Factors underlying individual differences and the relation to math.

作者信息

Yeo Darren J, Wilkey Eric D, Price Gavin R

机构信息

Department of Psychology & Human Development, Peabody College, Vanderbilt University, 230 Appleton Place, Nashville, TN 37203, United States of America; Division of Psychology, School of Social Sciences, Nanyang Technological University, 48 Nanyang Avenue, Singapore 639818, Singapore.

Department of Psychology & Human Development, Peabody College, Vanderbilt University, 230 Appleton Place, Nashville, TN 37203, United States of America.

出版信息

Acta Psychol (Amst). 2019 Jul;198:102877. doi: 10.1016/j.actpsy.2019.102877. Epub 2019 Jul 14.

Abstract

Humans tend to be inaccurate and inconsistent when estimating a large number of objects. Furthermore, we modify our estimates when feedback or a reference array is provided, indicating that the mappings between perceived numerosity and their corresponding numerals are largely malleable in response to calibration. However, there is great variability in response to calibration across individuals. Using uncalibrated and calibrated numerosity estimation conditions, the current study explored the factors underlying individual differences in the extent and nature of the malleability of numerosity estimation performance as a result of calibration in a sample of 71 undergraduate students. We found that individual differences in performance were reliable across conditions, and participants' responses to calibration varied greatly. Participants who were less consistent or had more proportionally spaced (i.e., linear) estimates before calibration tended to shift the distributions of their estimates to a greater extent. Higher calculation competence also predicted an increase in how linear participants' estimates were after calibration. Moreover, the effect of calibration was not continuous across numerosities within participants. This suggests that the mechanisms underlying numeral-numerosity mappings may be less systematic than previously thought and likely depend on cognitive mechanisms beyond representation of numerosities. Taken together, the mappings between numerosities and numerical symbols may not be stable and direct, but transient and mediated by task-related (e.g., strategic) mechanisms. Rather than estimation skills being foundational for math competence, math competence may also influence estimation skills. Therefore, numerosity estimation tasks are not a pure measure of number representations.

摘要

在估计大量物体时,人类往往不准确且不一致。此外,当提供反馈或参考阵列时,我们会修改自己的估计,这表明在感知数量与其相应数字之间的映射在很大程度上会因校准而具有可塑性。然而,个体对校准的反应存在很大差异。本研究采用未校准和校准后的数量估计条件,在71名本科生样本中,探讨了校准导致数量估计性能可塑性程度和性质的个体差异背后的因素。我们发现,不同条件下的表现个体差异是可靠的,参与者对校准的反应差异很大。在校准前一致性较差或估计比例间隔更大(即线性)的参与者,其估计分布往往会有更大程度的偏移。更高的计算能力也预示着校准后参与者估计的线性程度会增加。此外,在校准过程中,参与者对不同数量的校准效果并非连续的。这表明数字-数量映射背后的机制可能不像之前认为的那么系统,可能依赖于数量表征之外的认知机制。综上所述,数量与数字符号之间的映射可能不是稳定和直接的,而是短暂的且由与任务相关(如策略性)的机制介导。数学能力可能不仅以估计技能为基础,估计技能也可能受到数学能力的影响。因此,数量估计任务并非对数字表征的纯粹测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8d8/7893812/3c038be59bc7/nihms-1661657-f0001.jpg

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