Good Vibrations: Tuning a Systems Dynamics Model of Affect and Cognition in Learning to the Appropriate Frequency Bands of Fine-Grained Temporal Sequences of Data: Frequency Bands of Affect and Cognition

J. Mercier, Kathleen Whissell-Turner, Ariane Paradis, I. Avaca
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引用次数: 1

Abstract

Process-oriented studies of cooperative learning from an educational neuroscience perspective has not been firmly quantified experimentally. Within a modeling approach aimed at the development of a systems dynamics model of affect and cognition, the goal of this exploratory study is to identify typical timescales of variation for continuous metrics of affect (Frontal Alpha Asymmetry (FAA): valence) and cognition (Cognitive Load (CL); Index of Cognitive Engagement (ICE); Frontal Midline Theta (FMT): attention). These metrics were obtained from 72 participants paired in dyads (player and watcher) from whom electroencephalography (EEG) was recorded for 2 hours while one participant was playing a serious game to learn Physics, and the other one was watching passively. The results show rather slow cyclical variation for every metric tested, accompanied in certain cases by short bursts of faster variations. This result converges with [Newell 1990] cognitive architecture assuming that psychophysiological measures capture activity at higher levels such as operation tasks and operations. Theoretical, methodological and applied implications are discussed. Also, the need for further fine-grained analyses of the context and other atypical analyses are expressed.
良好的振动:调整学习中情感和认知的系统动力学模型到细粒度时间序列数据的适当频带:情感和认知的频带
从教育神经科学的角度对合作学习过程导向的研究还没有得到实验的量化。在旨在建立情感和认知系统动力学模型的建模方法中,本探索性研究的目标是确定情感(额叶α不对称(FAA):效价)和认知(认知负荷(CL);认知投入指数(ICE);额叶中线θ (FMT):注意。这些指标来自72名参与者(玩家和观察者),他们的脑电图(EEG)被记录了2小时,其中一名参与者正在玩一个严肃的游戏来学习物理,而另一名则是被动地观看。结果显示,每一个测试指标的周期性变化相当缓慢,在某些情况下伴随着快速变化的短爆发。这一结果与[Newell 1990]的认知架构相一致,该架构假设心理生理学测量可以捕捉更高层次的活动,如操作任务和操作。讨论了理论、方法和应用意义。此外,还表示需要对上下文进行进一步的细粒度分析和其他非典型分析。
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