通过游戏在小学数学中开发基于神经科学的信息和通信技术:案例研究评估

Marcos Procopio, R. Fernández-Cézar, Leandra Fernandes-Procopio, Benito Yáñez-Araque
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引用次数: 0

摘要

大学在知识生产和改变各学科教学方法方面发挥着举足轻重的作用。本研究是一项案例研究,详细介绍了在小学和幼儿教育教师双学位课程中实施基于游戏的教学方法。重点是将信息和通信技术(ICT)工具(特别是 Scratch 和 GeoGebra)与数学相结合,并以神经科学原理为基础。本研究以 28 名学生为样本,在数学练习中采用游戏式学习 (GBL),旨在让学生教师掌握教育未来三至六年级学生(7 至 11 岁)的策略。重点领域包括平面几何和空间几何,要求学生教师设计类似游戏的活动,模仿儿童解决问题的方法。这项研究的高潮是由学生教师进行演讲,展示神经科学原理如何促进小学生教育游戏的创作。研究结果凸显了数学教学的现实与学生教师所持的先入为主的观念之间的巨大差异。这项研究为将神经科学融入教育(特别是通过 GBL)开辟了道路,但也强调了全面理解和应用神经科学原理的必要性,以最大限度地提高学习成果。
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Neuroscience-Based Information and Communication Technologies Development in Elementary School Mathematics through Games: A Case Study Evaluation
Universities play a pivotal role in knowledge production and in transforming teaching methodologies across various subjects. This research is a case study detailing the pedagogical implementation of a game-based methodological approach in a dual-degree program for primary and early childhood education teachers. The focus is on integrating information and communication technologies (ICT) tools for mathematics, specifically Scratch and GeoGebra, underpinned by principles of neuroscience. Based on a sample of 28 students, this study adopted game-based learning (GBL) in mathematics exercises, aimed at equipping student-teachers with strategies for educating future students (ages 7 to 11) in the 3rd to the 6th grade. Key areas of focus included plane and spatial geometry, requiring student-teachers to design game-like activities, emulating the problem-solving approaches of children. The culmination of this study involved presentations by the student-teachers, demonstrating how neuroscience principles can enhance the creation of educational games for primary school students. The findings highlight a significant divergence between the reality of teaching mathematics and the preconceived notions held by the student-teachers. This study opens avenues for integrating neuroscience into education, particularly through GBL, but also highlights the need for comprehensive understanding and application of neuroscientific principles to maximize learning outcomes.
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