School of Early Childhood Education, Nanjing Xiaozhuang University, Nanjing, China.
School of Biological Science & Medical Engineering, Southeast University, Nanjing, China.
Sci Rep. 2021 Dec 10;11(1):23783. doi: 10.1038/s41598-021-03321-9.
Studying the mental effort in problem-solving is important to the understanding of how the brain allocates cognitive resources to process information. The electroencephalogram is a promising physiological approach to assessing the online mental effort. In this study, we investigate the EEG indicators of mental effort while solving scientific problems. By manipulating the complexity of the scientific problem, the level of mental effort also changes. With the increase of mental effort, theta synchronization in the frontal region and lower alpha desynchronization in the parietal and occipital regions significantly increase. Also, upper alpha desynchronization demonstrates a widespread enhancement across the whole brain. According to the functional topography of brain activity in the theta and alpha frequency, our results suggest that the mental effort while solving scientific problems is related to working memory, visuospatial processing, semantic processing and magnitude manipulation. This study suggests the reliability of EEG to evaluate the mental effort in an educational context and provides valuable insights into improving the problem-solving abilities of students in educational practice.
研究解决问题过程中的心理努力对于理解大脑如何分配认知资源来处理信息非常重要。脑电图是评估在线心理努力的一种很有前途的生理方法。在这项研究中,我们研究了解决科学问题时的脑电图指标。通过操纵科学问题的复杂性,心理努力的水平也会发生变化。随着心理努力的增加,额区的θ同步和顶枕区的较低α去同步显著增加。此外,上α去同步在整个大脑中表现出广泛的增强。根据θ和α频率的大脑活动的功能拓扑结构,我们的结果表明,解决科学问题时的心理努力与工作记忆、视空间处理、语义处理和数量操作有关。这项研究表明脑电图在教育环境中评估心理努力的可靠性,并为提高学生在教育实践中的解决问题能力提供了有价值的见解。