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人类脑动力学反映物理概念记忆检索的正确性和呈现方式。

Human Brain Dynamics Reflect the Correctness and Presentation Modality of Physics Concept Memory Retrieval.

作者信息

Liang Chih-Ping, She Hsiao-Ching, Huang Li-Yu, Chou Wen-Chi, Chen Sheng-Chang, Jung Tzyy-Ping

机构信息

Institute of Education, National Chiao Tung University, Hsinchu, Taiwan.

Department of Biology, National Changhua University of Education, Changhua, Taiwan.

出版信息

Front Hum Neurosci. 2020 Aug 31;14:331. doi: 10.3389/fnhum.2020.00331. eCollection 2020.

Abstract

Human memory retrieval is the core cognitive process of the human brain whenever it is processing the information. Less study has focused on exploring the neural correlates of the memory retrieval of scientific concepts when presented in word and picture modalities. Fewer studies have investigated the differences in the involved brain regions and how the brain dynamics in these regions would associate with the accuracy of the memory retrieval process. Therefore, this study specifically focused on investigating the human brain dynamics of participants when they retrieve physics concepts in word vs. pictorial modalities, and whether electroencephalogram (EEG) activities can predict the correctness of the retrieval of physics concepts. The results indicated that word modality induced a significant stronger right frontal theta augmentation than pictorial modality during the physics concepts retrieval process, whereas the picture modality induced a significantly greater right parietal alpha suppression than the word modality throughout the retrieval process spurred by the physics concept presentations. In addition, greater frontal midline theta augmentation was observed for incorrect responses than the correct responses during retrieve physics concepts. Moreover, the frontal midline theta power has greater negative predictive power for predicting the accuracy of physics concepts retrieval. In summary, the participants were more likely to retrieve physics concepts correctly if a lower amount of theta were allocated during the maintaining period from 2,000 ms through 3,500 ms before making responses. It provides insight for our future application of brain computer interface (BCI) in real-time science learning. This study implies that the lower frontal midline theta power is associated with a lower degree of cognitive control and active maintenance of representations as participants approach a correct answer.

摘要

人类记忆检索是人类大脑在处理信息时的核心认知过程。较少有研究关注探索以文字和图片形式呈现科学概念时记忆检索的神经关联。更少的研究调查了所涉及脑区的差异以及这些区域的脑动力学如何与记忆检索过程的准确性相关联。因此,本研究特别关注调查参与者在以文字与图片形式检索物理概念时的大脑动力学,以及脑电图(EEG)活动是否能够预测物理概念检索的正确性。结果表明,在物理概念检索过程中,文字形式比图片形式在右额叶诱发了显著更强的θ波增强,而在由物理概念呈现引发的整个检索过程中,图片形式比文字形式在右顶叶诱发了显著更大的α波抑制。此外,在检索物理概念时,错误反应比正确反应观察到更大的额中线θ波增强。而且,额中线θ波功率对预测物理概念检索的准确性具有更大的负向预测能力。总之,如果在做出反应前2000毫秒至3500毫秒的维持期内分配的θ波量较低,参与者更有可能正确检索物理概念。这为我们未来在实时科学学习中应用脑机接口(BCI)提供了见解。本研究表明,当参与者接近正确答案时,较低的额中线θ波功率与较低程度的认知控制和表征的主动维持相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a7d/7488981/497e8d42cd84/fnhum-14-00331-g0001.jpg

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