注意力控制训练和认知任务的迁移效应

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Haobo Zhang , Shaoxia Fan , Jing Yang , Jing Yi , Lizhen Guan , Hao He , Xingxing Zhang , Yuejia Luo , Qing Guan
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引用次数: 0

摘要

注意力控制是不同执行功能的共同基础。后向遮蔽多数功能任务(MFT-M)需要密集的注意控制,代表了一种需要动态灵活分配注意资源以减少不确定性的多样化情境。为了利用MFT-M训练注意力控制,并研究各种执行功能的训练转移效应,我们招募了健康的年轻人(人数=84),然后将他们平均随机分为两组,一组接受连续七天的MFT-M训练,另一组接受假项目训练。我们在训练前后进行了认知评估,并记录了经修订的注意力网络测试(ANT-R)、N-back和任务转换(TS)任务的脑电图(EEG)信号。与对照组相比,训练组在ANT-R任务中的Flanker同义条件和Flanker与位置双同义条件下,以及在言语记忆测试的学习试验中表现得更好。与对照组相比,训练组在2-back任务中的P2振幅减小和P3振幅增大,在TS任务的重复条件中的P3振幅增大,这表明训练组在两个任务的注意过程中的神经效率有所提高。内向性调节了训练的转移效应,这体现在训练后1-back效率和TS切换成本的显著组间*内向性交互作用上。我们的结果表明,使用MFT-M进行的注意力控制训练具有广泛的迁移范围,而且迁移效应受到训练任务形式的影响。内向促进了向工作记忆的迁移,阻碍了向灵活性的迁移。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Attention control training and transfer effects on cognitive tasks

Attention control is the common element underlying different executive functions. The backward Masking Majority Function Task (MFT-M) requires intensive attention control, and represents a diverse situation where attentional resources need to be allocated dynamically and flexibly to reduce uncertainty. Aiming to train attention control using MFT-M and examine the training transfer effects in various executive functions, we recruited healthy young adults (n = 84) and then equally randomized them into two groups trained with either MFT-M or a sham program for seven consecutive days. Cognitive evaluations were conducted before and after the training, and the electroencephalograph (EEG) signals were recorded for the revised Attention Network Test (ANT-R), N-back, and Task-switching (TS) tasks. Compared to the control group, the training group performed better on the congruent condition of Flanker and the double-congruency condition of Flanker and Location in the ANT-R task, and on the learning trials in the verbal memory test. The training group also showed a larger P2 amplitude decrease and P3 amplitude increase in the 2-back task and a larger P3 amplitude increase in the TS task's repeat condition than the control group, indicating improved neural efficiency in two tasks' attentional processes. Introversion moderated the transfer effects of training, as indicated by the significant group*introversion interactions on the post-training 1-back efficiency and TS switching cost. Our results suggested that attention control training with the MFT-M showed a broad transfer scope, and the transfer effect was influenced by the form of training task. Introversion facilitated the transfer to working memory and hindered the transfer to flexibility.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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