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Numerical processing efficiency improved in children using mental abacus: ERP evidence utilizing a numerical Stroop task

机译:使用智力算盘的儿童的数字处理效率得到提高:利用数字Stroop任务的ERP证据

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This study examined whether long-term abacus-based mental calculation (AMC) training improved numerical processing efficiency and at what stage of information processing the effect appeard. Thirty-three children participated in the study and were randomly assigned to two groups at primary school entry, matched for age, gender and IQ. All children went through the same curriculum except that the abacus group received a 2-h/per week AMC training, while the control group did traditional numerical practice for a similar amount of time. After a 2-year training, they were tested with a numerical Stroop task. Electroencephalographic (EEG) and event related potential (ERP) recording techniques were used to monitor the temporal dynamics during the task. Children were required to determine the numerical magnitude (NC) (NC task) or the physical size (PC task) of two numbers presented simultaneously. In the NC task, the AMC group showed faster response times but similar accuracy compared to the control group. In the PC task, the two groups exhibited the same speed and accuracy. The saliency of numerical information relative to physical information was greater in AMC group. With regards to ERP results, the AMC group displayed congruity effects both in the earlier (N1) and later (N2 and LPC (late positive component) time domain, while the control group only displayed congruity effects for LPC. In the left parietal region, LPC amplitudes were larger for the AMC than the control group. Individual differences for LPC amplitudes over left parietal area showed a positive correlation with RTs in the NC task in both congruent and neutral conditions. After controlling for the N2 amplitude, this correlation also became significant in the incongruent condition. Our results suggest that AMC training can strengthen the relationship between symbolic representation and numerical magnitude so that numerical information processing becomes quicker and automatic in AMC children.
机译:这项研究检查了长期的基于算盘的心理计算(AMC)训练是否可以提高数值处理效率以及在信息处理的哪个阶段出现了这种效果。 33名儿童参加了这项研究,并在小学入学时随机分为两组,年龄,性别和智商相匹配。除了算盘组每周接受2小时的AMC训练外,所有儿童都接受相同的课程,而对照组则在相似的时间内进行传统的数字练习。经过2年的培训后,他们通过数值Stroop任务进行了测试。脑电图(EEG)和事件相关电位(ERP)记录技术用于监视任务期间的时间动态。孩子需要确定同时显示的两个数字的数值幅度(NC)(NC任务)或物理尺寸(PC任务)。在NC任务中,与对照组相比,AMC组显示出更快的响应时间,但准确性相似。在PC任务中,两组显示出相同的速度和准确性。在AMC组中,数字信息相对于物理信息的显着性更高。至于ERP结果,AMC组在较早的(N1)和较晚的(N2和LPC(正阳性成分)时域)均显示出全同效应,而对照组仅显示LPC的全同性效应。 AMC的LPC幅度大于对照组,左上壁区域LPC幅度的个体差异在NC和中性条件下均与RT呈正相关,在控制N2幅度后,这种相关性也变得显着我们的研究结果表明,AMC训练可以加强符号表示和数值幅度之间的关系,从而使AMC儿童的数字信息处理变得更快,更自动。

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