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Effect of abacus training on executive function development and underlying neural correlates in Chinese children

机译:算盘培训对中国儿童行政功能发展及潜在神经相关性的影响

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Abstract Executive function (EF) refers to a set of cognitive abilities involved in self‐regulated behavior. Given the critical role of EF in cognition, strategies for improving EF have attracted intensive attention in recent years. Previous studies have explored the effects of abacus‐based mental calculation (AMC) training on several cognitive abilities. However, it remains unclear whether AMC training affects EF and its neural correlates. In this study, participants were randomly assigned to AMC or control groups upon starting primary school. The AMC group received 2?h AMC training every week, while the control group did not have any abacus experience. Neural activity during an EF task was examined using functional MRI for both groups in their 4 th and 6 th grades. Our results showed that the AMC group performed better and faster than the control group in both grades. They also had lower activation in the frontoparietal reigons than the control group in the 6 th grade. From the 4 th to the 6 th grade, the AMC group showed activation decreases in the frontoparietal regions, while the control group exhibited an opposite pattern. Furthermore, voxel‐wise regression analyses revealed that better performance was associated with lower task‐relevant brain activity in the AMC group but associated with greater task‐relevant brain activity in the control group. These results suggest that long‐term AMC training, with calculation ability as its original target, may improve EF and enhance neural efficiency of the frontoparietal regions during development. Hum Brain Mapp 38:5234–5249, 2017 . ? 2017 Wiley Periodicals, Inc.
机译:摘要执行功能(EF)是指自我监管行为中涉及的一组认知能力。鉴于EF在认知中的关键作用,近年来,改善EF的改善策略引起了密集的关注。以前的研究探讨了基于算盘的心理计算(AMC)训练对几种认知能力的影响。然而,仍然尚不清楚AMC培训是否影响EF及其神经相关性。在这项研究中,在开始小学时,参与者被随机分配到AMC或对照组。 AMC集团每周收到2?H AMC培训,而对照组没有任何算盘经验。在第4阶段和第6等级中使用功能MRI检查了EF任务期间的神经活动。我们的研究结果表明,AMC集团比两级对照组表现较好,更快。在第6级的对照组中,它们也较低的激活较低。从第4到第6级,AMC组显示前部区域的激活减少,而对照组表现出相反的模式。此外,Voxel-Wise回归分析表明,更好的性能与AMC组中的较低任务相关脑活动相关,但与对照组中的更高的任务相关脑活动相关。这些结果表明,具有计算能力的长期AMC培训作为其原始目标,可以提高EF,并在开发期间提高前部区域的神经效率。 HUM Brain MAPP 38:2017年5234-5249,2017年。还2017年Wiley期刊,Inc。

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