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脑磁图揭示了对简单乘法的快速和慢速反应的大脑激活的差异。

Magnetoencephalography reveals differences in brain activations for fast and slow responses to simple multiplications.

机构信息

IRCCS San Camillo Hospital, Via Alberoni 70, Lido, 30126, Venice, Italy.

Department of Developmental Psychology and Socialization, University of Padova, Padua, Italy.

出版信息

Sci Rep. 2021 Oct 13;11(1):20296. doi: 10.1038/s41598-021-97927-8.

Abstract

Despite decades of studies, it is still an open question on how and where simple multiplications are solved by the brain. This fragmented picture is mostly related to the different tasks employed. While in neuropsychological studies patients are asked to perform and report simple oral calculations, neuroimaging and neurophysiological studies often use verification tasks, in which the result is shown, and the participant must verify the correctness. This MEG study aims to unify the sources of evidence, investigating how brain activation unfolds in time using a single-digit multiplication production task. We compared the participants' brain activity-focusing on the parietal lobes-based on response efficiency, dividing their responses in fast and slow. Results showed higher activation for fast, as compared to slow, responses in the left angular gyrus starting after the first operand, and in the right supramarginal gyrus only after the second operand. A whole-brain analysis showed that fast responses had higher activation in the right dorsolateral prefrontal cortex. We show a timing difference of both hemispheres during simple multiplications. Results suggest that while the left parietal lobe may allow an initial retrieval of several possible solutions, the right one may be engaged later, helping to identify the solution based on magnitude checking.

摘要

尽管经过了几十年的研究,但大脑如何以及在何处解决简单乘法的问题仍然没有定论。这种碎片化的现象主要与所采用的不同任务有关。在神经心理学研究中,患者被要求进行并报告简单的口头计算,而神经影像学和神经生理学研究通常使用验证任务,其中会呈现结果,然后参与者必须验证其正确性。这项 MEG 研究旨在统一证据来源,通过使用单个数字乘法生成任务来研究大脑活动随时间的展开。我们根据反应效率比较了参与者的大脑活动——重点关注顶叶区域——将他们的反应分为快速和慢速。结果显示,与慢速反应相比,快速反应在第一次运算后,左角回的激活更高,而在第二次运算后,右缘上回的激活更高。全脑分析显示,快速反应在右背外侧前额叶皮层的激活更高。我们展示了简单乘法中两个半球的时间差异。结果表明,虽然左顶叶可能允许初始检索多个可能的解决方案,但右顶叶可能会稍后参与,帮助根据数量检查来识别解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8fcb/8514455/820432247928/41598_2021_97927_Fig1_HTML.jpg

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