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The effects of inhibitory control training for preschoolers on reasoning ability and neural activity

机译:学龄前儿童抑制性控制训练对推理能力和神经活动的影响

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摘要

Inhibitory control (including response inhibition and interference control) develops rapidly during the preschool period and is important for early cognitive development. This study aimed to determine the training and transfer effects on response inhibition in young children. Children in the training group (N = 20; 12 boys, mean age 4.87 ± 0.26 years) played “Fruit Ninja” on a tablet computer for 15 min/day, 4 days/week, for 3 weeks. Children in the active control group (N = 20; 10 boys, mean age 4.88 ± 0.20 years) played a coloring game on a tablet computer for 10 min/day, 1–2 days/week, for 3 weeks. Several cognitive tasks (involving inhibitory control, working memory, and fluid intelligence) were used to evaluate the transfer effects, and electroencephalography (EEG) was performed during a go/no-go task. Progress on the trained game was significant, while performance on a reasoning task (Raven’s Progressive Matrices) revealed a trend-level improvement from pre- to post-test. EEG indicated that the N2 effect of the go/no-go task was enhanced after training for girls. This study is the first to show that pure response inhibition training can potentially improve reasoning ability. Furthermore, gender differences in the training-induced changes in neural activity were found in preschoolers.
机译:抑制控制(包括反应抑制和干扰控制)在学龄前迅速发展,对于早期认知发展很重要。这项研究旨在确定训练和转移对幼儿抑制反应的作用。训练组的儿童(N = 20; 12个男孩,平均年龄4.87±0.26岁)在平板电脑上玩“水果忍者”,每天15分钟,每天4天,持续3周。活跃对照组的儿童(N = 20; 10个男孩,平均年龄4.88±0.20岁)在平板电脑上玩着色游戏,每天10 min /天,1-2天/周,持续3周。一些认知任务(涉及抑制性控制,工作记忆和体液智力)用于评估转移效果,并且在执行/不执行任务期间执行了脑电图(EEG)。经过训练的游戏取得了显着进步,而推理任务(Raven的渐进式矩阵)的表现则表明了从测试前到测试后的趋势水平改进。脑电图表明,对女孩进行培训后,执行/不执行任务的N2效果得到增强。这项研究是第一个表明纯响应抑制训练可以潜在地提高推理能力的研究。此外,在学龄前儿童中发现了训练引起的神经活动变化中的性别差异。

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