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Abacus Training Modulates the Neural Correlates of Exact and Approximate Calculations in Chinese Children: An fMRI Study

机译:珠算训练调节中国儿童精确和近似计算的神经相关性:fMRI研究

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Exact (EX) and approximate (AP) calculations rely on distinct neural circuits. However, the training effect on the neural correlates of EX and AP calculations is largely unknown, especially for the AP calculation. Abacus-based mental calculation (AMC) is a particular arithmetic skill that can be acquired by long-term abacus training. The present study investigated whether and how the abacus training modulates the neural correlates of EX and AP calculations by functional magnetic resonance imaging (fMRI). Neural activations were measured in 20 abacus-trained and 19 nontrained Chinese children during AP and EX calculation tasks. Our results demonstrated that: (1) in nontrained children, similar neural regions were activated in both tasks, while the size of activated regions was larger in AP than those in the EX; (2) in abacus-trained children, no significant difference was found between these two tasks; (3) more visuospatial areas were activated in abacus-trained children under the EX task compared to the nontrained. These results suggested that more visuospatial strategies were used by the nontrained children in the AP task compared to the EX; abacus-trained children adopted a similar strategy in both tasks; after long-term abacus training, children were more inclined to apply a visuospatial strategy during processing EX calculations.
机译:精确(EX)和近似(AP)计算依赖于不同的神经回路。但是,对于EX和AP计算的神经相关性的训练效果尚不清楚,尤其是对于AP计算而言。基于算盘的心理计算(AMC)是一项特殊的算术技能,可以通过长期算盘训练获得。本研究调查了算盘训练是否以及如何通过功能磁共振成像(fMRI)调节EX和AP计算的神经相关性。在AP和EX计算任务期间,对20名经过算盘训练的中国儿童和19名未经训练的中国儿童进行了神经激活测量。我们的研究结果表明:(1)在未受过训练的儿童中,两个任务均激活了相似的神经区域,而AP中的激活区域大于EX中的激活区域; (2)在经过算盘训练的孩子中,这两项任务之间没有显着差异; (3)在EX任务下,经过算盘训练的儿童比未经训练的儿童激活了更多的视觉空间区域。这些结果表明,与EX相比,未经训练的儿童在AP任务中使用了更多的视觉空间策略。在两个任务中,接受算盘培训的儿童都采用了类似的策略;经过长期的算盘训练,孩子们在处理EX计算时更倾向于采用视觉空间策略。

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