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大脑的执行功能及其对物理概念理解的影响。

Executive function of the brain and its influences on understanding of physics concept.

机构信息

Department of Mathematics and Science Education, Faculty of Education, University of Malaya, Malaysia.

School of Educational Studies, Universiti Sains Malaysia, Malaysia.

出版信息

Trends Neurosci Educ. 2021 Sep;24:100159. doi: 10.1016/j.tine.2021.100159. Epub 2021 Aug 1.

Abstract

Advances in neuroscience studies have brought new insights into the development of Executive Functions (EFs) of the brain and its influence on understanding science concepts. This study was conducted to examine the relationships between three main components of EF: working memory, inhibition, set-shifting and understanding of Force concepts among adolescents. This study also investigated how gender mediates the relationships between the components of EF and understanding. Cambridge Neuropsychological Test Automated Battery was used to assess students' level of working memory, inhibition, and set-shifting. The Force Concept Test measured students understanding. Smart-PLS analysis was employed to examine the relationships between the three components of EF and understanding; and how gender mediates the relationships. The result reveals that working memory significantly relates to students' understanding of Force concepts in a positive direction. On the contrary, both set-shifting and inhibition exhibit non-significant relationships. The findings also demonstrate that gender does not significantly mediate the relationships. The findings are useful for Physics teachers to guide them through designing the curriculum and opting for an appropriate pedagogical strategy considering the role of the components of EF for teaching the lessons on Force.

摘要

神经科学研究的进展为大脑执行功能(EF)的发展及其对科学概念理解的影响提供了新的见解。本研究旨在探讨 EF 的三个主要组成部分(工作记忆、抑制、定势转移)与青少年对力概念的理解之间的关系。本研究还调查了性别如何调节 EF 成分与理解之间的关系。剑桥神经心理学测试自动化电池用于评估学生的工作记忆、抑制和定势转移水平。力概念测试衡量学生对力概念的理解。Smart-PLS 分析用于检验 EF 的三个组成部分与理解之间的关系;以及性别如何调节这些关系。结果表明,工作记忆与学生对力概念的理解呈正相关。相反,定势转移和抑制都表现出无显著关系。研究结果还表明,性别并不显著调节这些关系。这些发现对于物理教师来说很有用,可以指导他们设计课程,并考虑到 EF 成分在教授力课程中的作用,选择适当的教学策略。

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