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Sequential Neural Processes in Abacus Mental Addition: An EEG and fMRI Case Study

机译:珠算心理附加过程中的顺序神经过程:脑电图和功能磁共振成像案例研究

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摘要

Abacus experts are able to mentally calculate multi-digit numbers rapidly. Some behavioral and neuroimaging studies have suggested a visuospatial and visuomotor strategy during abacus mental calculation. However, no study up to now has attempted to dissociate temporally the visuospatial neural process from the visuomotor neural process during abacus mental calculation. In the present study, an abacus expert performed the mental addition tasks (8-digit and 4-digit addends presented in visual or auditory modes) swiftly and accurately. The 100% correct rates in this expert’s task performance were significantly higher than those of ordinary subjects performing 1-digit and 2-digit addition tasks. ERPs, EEG source localizations, and fMRI results taken together suggested visuospatial and visuomotor processes were sequentially arranged during the abacus mental addition with visual addends and could be dissociated from each other temporally. The visuospatial transformation of the numbers, in which the superior parietal lobule was most likely involved, might occur first (around 380 ms) after the onset of the stimuli. The visuomotor processing, in which the superior/middle frontal gyri were most likely involved, might occur later (around 440 ms). Meanwhile, fMRI results suggested that neural networks involved in the abacus mental addition with auditory stimuli were similar to those in the visual abacus mental addition. The most prominently activated brain areas in both conditions included the bilateral superior parietal lobules (BA 7) and bilateral middle frontal gyri (BA 6). These results suggest a supra-modal brain network in abacus mental addition, which may develop from normal mental calculation networks.
机译:算盘专家能够快速地计算出多位数的数字。一些行为和神经影像学研究提出了算盘心理计算过程中的视觉空间和视觉运动策略。但是,到目前为止,还没有研究试图在算盘心理计算中将视觉空间神经过程从视觉运动神经过程中暂时分离出来。在本研究中,算盘专家快速,准确地执行了心理加法任务(以视觉或听觉方式呈现的8位和4位数字加法)。该专家任务表现的100%正确率显着高于执行1位和2位加法任务的普通受试者。 ERPs,EEG来源定位和fMRI结果结合在一起表明,算盘智力添加过程中视觉空间和视觉运动过程是顺序排列的,并具有视觉上的附加物,并且可能在时间上彼此分离。刺激发生后,可能首先发生(大约380 ms)顶上小叶最可能受累的数字的视觉空间转换。上/中额额回最可能参与的运动动作处理可能会在以后(约440毫秒)发生。同时,功能磁共振成像结果表明,涉及算盘精神添加和听觉刺激的神经网络与视觉算盘精神添加的神经网络相似。在两种情况下,最活跃的大脑区域包括双侧上顶小叶(BA 7)和双侧额中回(BA 6)。这些结果表明,算盘心理添加中的超模式脑网络可能是从正常的心理计算网络发展而来的。

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