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阅读阿拉伯数字与口头数字的不同神经机制:一项事件相关电位研究。

Distinct neural mechanisms for reading Arabic vs. verbal numbers: An ERP study.

作者信息

Proverbio Alice Mado, Bianco Marco, De Benedetto Francesco

机构信息

Neuro-Mi Center for Neuroscience, University of Milano-Bicocca, Milan, Italy.

出版信息

Eur J Neurosci. 2020 Dec;52(11):4480-4489. doi: 10.1111/ejn.13938. Epub 2018 Aug 7.

Abstract

In this electroencephalogram/event-related potential (EEG/ERP) study, 16 volunteers were asked to compare the numerical equality of 360 pairs of multidigit numbers presented in Arabic or verbal format. Behavioural data showed faster and more accurate responses for digit targets, with a right hand/left hemisphere advantage only for verbal numerals. Occipito-temporal N1, peaking at approximately 180 ms, was strongly left-lateralized during verbal number processing and bilateral during digit processing. A LORETA (low-resolution electromagnetic tomography) source reconstruction performed at the N1 latency stage (155-185 ms) revealed greater brain activation during coding of Arabic than of verbal stimuli. Digit perceptual coding was associated with the activation of the right angular gyrus (rAG), the left fusiform gyrus (FG,BA37), and left and right superior and medial frontal areas. N1 sources for verbal numerals included the left FG (BA37), the precuneus (BA31), the parahippocampal area and a small right prefrontal activation. In addition, verbal numerals elicited a late frontocentral negativity, possibly reflecting stimulus unfamiliarity or complexity. Overall, the data suggest distinct mechanisms for number reading through ciphers (digits) or words. Information about quantity was accessed earlier and more accurately if numbers were in a nonlinguistic code. Indeed, it can be speculated that numerosity processing would involve circuits originally involved in processing space (i.e., rAG/rIPS).

摘要

在这项脑电图/事件相关电位(EEG/ERP)研究中,16名志愿者被要求比较以阿拉伯数字或文字形式呈现的360对多位数的数值相等性。行为数据显示,对数字目标的反应更快、更准确,仅对文字数字存在右手/左半球优势。枕颞N1在大约180毫秒时达到峰值,在文字数字处理过程中强烈左偏侧化,在数字处理过程中双侧出现。在N1潜伏期阶段(155 - 185毫秒)进行的低分辨率电磁断层扫描(LORETA)源重建显示,在阿拉伯数字编码期间比文字刺激期间有更大的脑激活。数字感知编码与右侧角回(rAG)、左侧梭状回(FG,BA37)以及左右额上回和额中回区域的激活有关。文字数字的N1源包括左侧FG(BA37)、楔前叶(BA31)、海马旁区域和右侧前额叶的小范围激活。此外,文字数字引发了晚期额中央负波,可能反映了刺激的不熟悉或复杂性。总体而言,数据表明通过密码(数字)或文字进行数字阅读存在不同机制。如果数字采用非语言编码,数量信息的获取会更早且更准确。实际上,可以推测数字处理可能涉及最初参与空间处理的神经回路(即rAG/rIPS)。

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