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首页> 外文期刊>Journal of Cognitive Neuroscience >The Brain Locus of Interaction between Number and Size: A Combined Functional Magnetic Resonance Imaging and Event-related Potential Study
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The Brain Locus of Interaction between Number and Size: A Combined Functional Magnetic Resonance Imaging and Event-related Potential Study

机译:数量和大小之间相互作用的大脑轨迹:结合功能磁共振成像和事件相关的电位研究。

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Whether the human brain is equipped with a special neural substrate for numbers, or rather with a common neural substrate for processing of several types of magnitudes, has been the topic of a long-standing debate. The present study addressed this question by using functional magnetic resonance imaging (fMRI) and event-related potentials (ERPs) together with the size-congruity paradigm, a Stroop-like task in which numerical values and physical sizes were varied independently. In the fMRI experiment, a region-of-interest analysis of the primary motor cortex revealed interference effects in the hemisphere ipsilateral to the response hand, indicating that the stimulus-stimulus conflict between numerical and physical magnitude is not completely resolved until response initiation. This result supports the assumption of distinct comparison mechanisms for physical size and numerical value. In the ERP experiment, the cognitive load was manipulated in order to probe the degree to which information processing is shared across cognitive systems. As in the fMRI experiment, we found that the stimulus-stimulus conflict between numerical and physical magnitude is not completely resolved until response initiation. However, such late interaction was found only in the low cognitive load condition. In contrast, in the high load condition, physical and numerical dimensions interacted only at the comparison stage. We concluded that the processing of magnitude can be subserved by shared or distinct neural substrates, depending on task requirements.
机译:人类的大脑是否配备有专门的数字神经底物,还是配备了通用的神经底物来处理几种类型的幅度,一直是争论不休的话题。本研究通过使用功能磁共振成像(fMRI)和事件相关电位(ERP)以及尺寸一致性范例来解决此问题,尺寸一致性范例是数值和物理尺寸独立变化的类似Stroop的任务。在功能磁共振成像实验中,对原发性运动皮层的兴趣区域分析揭示了响应手同侧半球的干扰效应,表明数值和物理量之间的刺激-刺激冲突直到响应开始才被完全解决。该结果支持对物理尺寸和数值使用不同比较机制的假设。在ERP实验中,操纵了认知负荷,以探究跨认知系统共享信息处理的程度。像在功能磁共振成像实验中一样,我们发现直到响应启动,数值和物理量之间的刺激-刺激冲突才得以完全解决。然而,仅在低认知负荷条件下才发现这种晚期相互作用。相反,在高负载条件下,物理尺寸和数值尺寸仅在比较阶段相互作用。我们得出的结论是,幅度的处理可以根据任务要求由共享的或不同的神经底物来保留。

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