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Parietal Representation of Symbolic and Nonsymbolic Magnitude

机译:符号和非符号幅度的顶表示

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The close behavioral parallels between the processing of quantitative information conveyed by symbolic and non-symbolic stimuli led to the hypothesis that there exists a common cerebral representation of quantity (Dehaene, Dehaene-Lambertz, & Cohen, 1998). The neural basis underlying the encoding of number magnitude has been localized to regions in and around the intraparietal sulcus (IPS) by brain-imaging studies. However, it has never been demonstrated that these same regions are also involved in the quantitative processing of nonsymbolic stimuli. Using functional brain imaging, we explicitly tested the hypothesis of a common substrate. Angles, lines, and two-digit numbers were presented pairwise, one to the left and one to the right of the fixation point. In the three comparison tasks, participants (n = 18) pressed the key on the side of the largest quantity. In the three control tasks, they indicated the side on which dimming occurred. A conjunction analysis between the three subtractions (comparison task-control task) revealed a site in left IPS that is specifically responsive when two stimuli have to be compared quantitatively, irrespective of stimulus format. The results confirm the hypothesis that quantity is represented by a common mechanism for both symbolic and nonsymbolic stimuli in IPS. In addition, the interaction between task and type of stimulus identified a region anterior to the conjunction site, not specific for quantitative processing, but reflecting general processes loaded by number processing.
机译:符号和非符号刺激所传递的定量信息处理之间的行为相似性接近,导致了这样一个假设,即存在数量上常见的大脑表示(Dehaene,Dehaene-Lambertz和Cohen,1998)。通过脑成像研究,数字幅度编码背后的神经基础已经定位于顶内沟(IPS)内和周围的区域。然而,从未证明这些相同区域也参与非符号刺激的定量处理。使用功能性脑成像,我们明确测试了常见底物的假设。成对显示角度,直线和两位数,固定点向左,右侧向右。在这三个比较任务中,参与者(n = 18)按了最大数量一侧的键。在这三个控制任务中,它们指示发生调光的一侧。三个减法(比较任务-控制任务)之间的联合分析显示,左IPS中的一个位点在必须定量比较两个刺激而与刺激形式无关时特别有反应。结果证实了以下假设:数量由IPS中象征性和非象征性刺激的共同机制表示。此外,任务和刺激类型之间的相互作用确定了连接点之前的区域,该区域不是特定于定量处理的,而是反映了由数字处理加载的一般过程。

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