ISSN 0439-755X
CN 11-1911/B
主办:中国心理学会
   中国科学院心理研究所
出版:科学出版社

心理学报 ›› 2026, Vol. 58 ›› Issue (11): 2371-2389.doi: 10.3724/SP.J.1041.2026.2371 cstr: 32110.14.2026.2371

• 研究报告 • 上一篇    下一篇

工作记忆与学龄儿童数学能力的关系:跨学段网络分析

祝孝亮1, 仇宏霄1, 林靓2, 王心亮1, 杨秀杰2, 赵鑫1   

  1. 1西北师范大学心理学院, 兰州 730070;
    2北京师范大学心理学部, 北京 100875
  • 收稿日期:2025-06-18 发布日期:2026-09-10 出版日期:2026-11-25
  • 通讯作者: 赵鑫, E-mail: psyzhaoxin@nwnu.edu.cn; 杨秀杰, E-mail: amyyang@bnu.edu.cn
  • 基金资助:
    国家自然科学基金项目(32260207), 教育部人文社会科学研究项目(21XJA190005), 2023年甘肃省教育科技创新项目(2023A-124)资助

Associations between working memory and mathematical ability in elementary school children: A cross-grade network analysis

ZHU Xiaoliang1, QIU Hongxiao1, LIN Liang2, WANG Xinliang1, YANG Xiujie2, ZHAO Xin1   

  1. 1School of Psychology, Northwest Normal University, Lanzhou 730070, China;
    2Faculty of Psychology, Beijing Normal University, Beijing 100875, China
  • Received:2025-06-18 Online:2026-09-10 Published:2026-11-25

摘要: 尽管大量研究表明工作记忆与数学能力存在紧密联系, 但有关两种能力子结构之间的特异性关联及随学段变化的趋势尚不明确。本研究以875名一(低)、三(中)、五(高)年级(学段)儿童为研究对象, 采用网络分析方法系统考察了各工作记忆子成分与不同领域数学能力之间的关系, 以及这些联系是否会在不同学段间显现差异。结果表明, 低学段中言语工作记忆容量和言语工作记忆刷新与数学运算能力之间具有最强的正向关联; 视空工作记忆容量与中、高学段儿童的数学运算能力具有最大的正向联系; 言语工作记忆容量与中学段逻辑思维能力和高学段空间想象能力呈现最紧密的关联。此外, 网络比较进一步发现学龄中段言语工作记忆刷新与数学运算能力之间的连接强度显著低于学龄低段和学龄高段, 且学龄低段言语工作记忆刷新与空间想象能力之间的连接强度显著低于学龄高段。本文为理解工作记忆与数学能力之间的关系及其发展模式提供了新的视角, 对制定学龄儿童数学能力干预增强措施具有重要教育启示意义。

关键词: 工作记忆, 数学能力, 学龄儿童, 网络分析

Abstract: Mathematical ability is a crucial component of human cognitive function, which is defined as the ability to acquire, process, and store mathematical information. Although many studies have established a close relationship between working memory and mathematical ability, current empirical evidence lacks a comprehensive understanding of the specificity of associations between different types of working memory and various domains of mathematical ability, as well as their developmental trajectories. Further, traditional methodologies in previous research, such as structural equation modeling, frequently fail to adequately uncover complex interactions among the subcomponents of these two cognitive constructs. To address these gaps, this network analysis study is the first to systematically examine the relationship between different types of working memory and domains of mathematical ability in elementary school children, and explore whether the patterns of these connections vary across developmental stages in elementary school children.
The study sample comprised 875 elementary school children. Verbal working memory capacity was assessed using digit span forward and backward tasks, and visuospatial working memory capacity was measured with forward and backward Corsi span tasks. The verbal 1-back task and spatial 1-back task were employed to assess the children’s verbal working memory updating and visuospatial working memory updating, respectively. For mathematical ability, five tests measured mathematical operations, logical reasoning, and spatial imagination abilities. Family socioeconomic status, non-verbal intelligence, attention, gender, and age were included as covariates in all of the analyses. For network analysis, separate network models were estimated for every grade cohort. Developmental differences in network structures were examined using the network comparison test.
The results demonstrated that upper-grade children exhibited significantly higher scores across all of the working memory components and three mathematical domains compared to lower-grade children. Network estimation revealed distinct developmental patterns: (1) In the lower grades, verbal working memory capacity and verbal working memory updating exhibit the strongest positive associations with mathematical operations. (2) Visuospatial working memory capacity shows the largest positive association with mathematical operations among children in the middle and upper grades. (3) Verbal working memory capacity is most strongly associated with logical reasoning in the middle grades, and with spatial imagination in the upper grades. (4) Network comparison tests determined that the strength of the connection between verbal working memory updating and mathematical operations in the middle grades is significantly weaker than in the lower and upper grades. Further, the connection between verbal working memory updating and spatial imagination in the lower grades is significantly weaker than in the upper grades.
These findings support the domain-specific models of working memory, thus demonstrating that working memory-mathematics relationships show systematic variation based on the specific working memory subcomponents assessed and mathematical domain involved. These results advance the theoretical understanding of cognitive structure through novel empirical evidence and also provide a framework for evidence-based interventions to improve mathematical abilities in elementary school children.

Key words: working memory, mathematical ability, elementary school children, network analysis

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