来自单次试验的行为相关电位与事件相关电位和行为表现之间的个体间相关性揭示了数字运算的右侧化处理过程

IF 2.2 3区 心理学 Q3 NEUROSCIENCES Brain and Cognition Pub Date : 2024-06-15 DOI:10.1016/j.bandc.2024.106185
Bingqian Ren , Yuhan Zhang , Zhijun Cui , Dazhi Cheng , Xiaotong Liang , Pingting Lin , Baihan Lyu , Xinlin Zhou
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引用次数: 0

摘要

累积的功能磁共振成像(fMRI)和脑电图证据表明,数字首先在枕顶叶皮层进行处理。fMRI证据还表明数字处理右侧化,但事件相关电位(ERP)研究却没有一致的证据。本研究调查了左侧、右侧和双侧视野中数字处理的ERP。研究采用了ERP与行为相关性的单次试验来显示ERP与行为反应之间的关联。结果显示,当刺激出现在左侧视野而非右侧视野时,右侧 N1 分量的早期行为-ERP 相关性非常明显。行为 ERP 相关性被称为 BN1。根据反应时间或错误率,存在双侧 BN1,但当刺激出现在双侧视野时,右侧 BN1 比左侧 BN1 大。因此,这项研究为数字处理的个体差异提供了一个新的神经标记,并表明数字处理得到了右枕顶叶皮层的支持。
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Behavior-related potentials from single-trial interindividual correlation between event related potentials and behavioral performance reveals right lateralized processing of numerosity

Accumulated functional magnetic resonance imaging (fMRI) and electroencephalography evidence indicate that numerosity is first processed in the occipito-parietal cortex. fMRI evidence also indicates right-lateralized processing of numerosity, but there is no consistent evidence from event-related potential (ERP) studies. This study investigated the ERP of numerosity processing in the left, right, and bilateral visual fields. The single-trial ERP-behavioral correlation was applied to show how the ERP was associated with behavioral responses. The results showed a significant early behavioral-ERP correlation on the right N1 component when stimuli were presented in the left visual field rather than in the right visual field. The behavioral ERP correlation was termed BN1. There was bilateral BN1 based on the reaction time or error rate, but the right BN1 was larger than that the left BN1 when the stimulus was present in the bilateral visual field. Therefore, this study provided a new neural marker for individual differences in processing numerosity and suggested that processing numerosity was supported by the right occipito-parietal cortex.

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来源期刊
Brain and Cognition
Brain and Cognition 医学-神经科学
CiteScore
4.60
自引率
0.00%
发文量
46
审稿时长
6 months
期刊介绍: Brain and Cognition is a forum for the integration of the neurosciences and cognitive sciences. B&C publishes peer-reviewed research articles, theoretical papers, case histories that address important theoretical issues, and historical articles into the interaction between cognitive function and brain processes. The focus is on rigorous studies of an empirical or theoretical nature and which make an original contribution to our knowledge about the involvement of the nervous system in cognition. Coverage includes, but is not limited to memory, learning, emotion, perception, movement, music or praxis in relationship to brain structure or function. Published articles will typically address issues relating some aspect of cognitive function to its neurological substrates with clear theoretical import, formulating new hypotheses or refuting previously established hypotheses. Clinical papers are welcome if they raise issues of theoretical importance or concern and shed light on the interaction between brain function and cognitive function. We welcome review articles that clearly contribute a new perspective or integration, beyond summarizing the literature in the field; authors of review articles should make explicit where the contribution lies. We also welcome proposals for special issues on aspects of the relation between cognition and the structure and function of the nervous system. Such proposals can be made directly to the Editor-in-Chief from individuals interested in being guest editors for such collections.
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