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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Transfer effects of abacus training on transient and sustained brain activation in the frontal-parietal network
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Transfer effects of abacus training on transient and sustained brain activation in the frontal-parietal network

机译:算盘训练对额外网络瞬态和持续大脑激活的转移效应

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摘要

Understanding the neural mechanisms of training-induced brain plasticity has significant implications for improving academic achievement. Previous studies suggest abacus-based mental calculation (AMC) training significantly improves individual's arithmetic capability, and the frontal-parietal network is suggested to be the key neural circuit underlying AMC. Yet, it remains unclear how AMC training shifts brain activation in this network and whether the training effect is transferable or not. The current study aimed to address these questions using a longitudinal design engaging an experimental group (20 days of AMC training) and a control group. The fMRI results indicated that AMC training increased sustained but reduced transient activation in the frontal-parietal network when the AMC group performed the training-related arithmetic task. More interestingly, similar pre- to post-training changes in activation were observed in two training-unrelated tasks. The control group, on the other hand, did not exhibit any pre- to post-training differences in brain activation on any of the three tasks. These findings extend the previous cross-sectional studies of AMC and suggest that AMC training induces functional changes in brain activation and such plasticity may be transferable beyond the AMC. The training effects on sustained and transient neural activity may also provide a new perspective to understand training-induced neural plasticity and related transfer effect. (C) 2019 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:了解培训诱导的脑塑性的神经机制对改善学术成果具有重大影响。以前的研究表明,基于算盘的心理计算(AMC)培训显着提高了个体的算术能力,并且建议前地网络成为底层AMC的关键神经电路。然而,它仍然尚不清楚AMC培训如何在该网络中转移大脑激活以及培训效果是否可转移。目前的研究旨在使用从事实验组(AMC训练20天)和对照组的纵向设计来解决这些问题。 FMRI结果表明,当AMC集团进行培训相关的算术任务时,AMC培训增加了额外网络中的跨前网络中的暂态激活。更有趣的是,在两项培训 - 无关的任务中观察到类似的激活后培训前更改。另一方面,对照组没有表现出任何三项任务中的任何一个预先训练后的脑激活差异。这些发现扩展了AMC的先前横截面研究,并表明AMC培训诱导脑激活的功能变化,并且这种可塑性可能可转移到AMC之外。对持续和瞬态神经活动的培训效应也可能提供了了解培训诱导的神经可塑性和相关转移效果的新视角。 (c)2019年IBRO。 elsevier有限公司出版。保留所有权利。

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