Orovas Christos, Sapounidis Theodosios, Volioti Christina, Keramopoulos Euclid
Department of Products and Systems Design Engineering, University of Western Macedonia, 50100 Kozani, Greece.
School of Philosophy and Education, Aristotle University of Thessaloniki, 54124 Thessaloniki, Greece.
Sensors (Basel). 2024 Dec 31;25(1):182. doi: 10.3390/s25010182.
Education is an activity that involves great cognitive load for learning, understanding, concentrating, and other high-level cognitive tasks. The use of the electroencephalogram (EEG) and other brain imaging techniques in education has opened the scientific field of neuroeducation. Insights about the brain mechanisms involved in learning and assistance in the evaluation and optimization of education methodologies according to student brain responses is the main target of this field. Being a multidisciplinary field, neuroeducation requires expertise in various fields such as education, neuroinformatics, psychology, cognitive science, and neuroscience. The need for a comprehensive guide where various important issues are presented and examples of their application in neuroeducation research projects are given is apparent. This paper presents an overview of the current hardware and software options, discusses methodological issues, and gives examples of best practices as found in the recent literature. These were selected by applying the PRISMA statement to results returned by searching PubMed, Scopus, and Google Scholar with the keywords "EEG and neuroeducation" for projects published in the last six years (2018-2024). Apart from the basic background knowledge, two research questions regarding methodological aspects (experimental settings and hardware and software used) and the subject of the research and type of information used from the EEG signals are addressed and discussed.
教育是一项涉及学习、理解、集中注意力以及其他高级认知任务的高认知负荷活动。脑电图(EEG)和其他脑成像技术在教育中的应用开启了神经教育这一科学领域。该领域的主要目标是深入了解学习过程中涉及的大脑机制,并根据学生的大脑反应协助评估和优化教育方法。作为一个多学科领域,神经教育需要教育、神经信息学、心理学、认知科学和神经科学等各个领域的专业知识。显然,需要一本全面的指南,其中呈现各种重要问题,并给出它们在神经教育研究项目中的应用实例。本文概述了当前的硬件和软件选项,讨论了方法学问题,并给出了近期文献中最佳实践的示例。这些示例是通过将PRISMA声明应用于在过去六年(2018 - 2024年)发表的项目中,使用关键词“EEG与神经教育”在PubMed、Scopus和谷歌学术上搜索返回的结果而挑选出来的。除了基本的背景知识外,还探讨并讨论了两个关于方法学方面(实验设置以及使用的硬件和软件)以及研究主题和从EEG信号中使用的信息类型的研究问题。