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数量感知中由拓扑结构定义的单元。

Topology-defined units in numerosity perception.

作者信息

He Lixia, Zhou Ke, Zhou Tiangang, He Sheng, Chen Lin

机构信息

State Key Laboratory of Brain and Cognitive Science, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China.

State Key Laboratory of Brain and Cognitive Science, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China

出版信息

Proc Natl Acad Sci U S A. 2015 Oct 13;112(41):E5647-55. doi: 10.1073/pnas.1512408112. Epub 2015 Sep 28.

Abstract

What is a number? The number sense hypothesis suggests that numerosity is "a primary visual property" like color, contrast, or orientation. However, exactly what attribute of a stimulus is the primary visual property and determines numbers in the number sense? To verify the invariant nature of numerosity perception, we manipulated the numbers of items connected/enclosed in arbitrary and irregular forms while controlling for low-level features (e.g., orientation, color, and size). Subjects performed discrimination, estimation, and equality judgment tasks in a wide range of presentation durations and across small and large numbers. Results consistently show that connecting/enclosing items led to robust numerosity underestimation, with the extent of underestimation increasing monotonically with the number of connected/enclosed items. In contrast, grouping based on color similarity had no effect on numerosity judgment. We propose that numbers or the primitive units counted in numerosity perception are influenced by topological invariants, such as connectivity and the inside/outside relationship. Beyond the behavioral measures, neural tuning curves to numerosity in the intraparietal sulcus were obtained using functional MRI adaptation, and the tuning curves showed that numbers represented in the intraparietal sulcus were strongly influenced by topology.

摘要

什么是数字?数字感假说认为,数字量是一种像颜色、对比度或方向一样的“主要视觉属性”。然而,刺激的究竟什么属性是主要视觉属性并在数字感中决定数字呢?为了验证数字量感知的不变性,我们在控制低层次特征(如方向、颜色和大小)的同时,以任意和不规则的形式操纵相连/封闭的项目数量。受试者在广泛的呈现持续时间内以及针对小数字和大数字执行辨别、估计和平等判断任务。结果一致表明,相连/封闭项目会导致数字量的显著低估,低估程度随着相连/封闭项目的数量单调增加。相比之下,基于颜色相似性的分组对数字量判断没有影响。我们提出,数字或数字量感知中计数的原始单位受拓扑不变性影响,如连通性和内外关系。除了行为测量外,还使用功能磁共振成像适应技术获得了顶内沟中对数字量的神经调谐曲线,调谐曲线表明顶内沟中表示的数字受拓扑结构的强烈影响。

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