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源自个体差异的数量感知觉机制选择。

Sensorimotor mechanisms selective to numerosity derived from individual differences.

机构信息

Department of Neuroscience, Psychology, Pharmacology and Child Health, University of Florence, Florence, Italy.

School of Psychology, University of Sydney, Camperdown NSW, Sydney, Australia.

出版信息

Elife. 2024 Apr 2;12:RP92169. doi: 10.7554/eLife.92169.

Abstract

We have previously shown that after few seconds of adaptation by finger-tapping, the perceived numerosity of spatial arrays and temporal sequences of visual objects displayed near the tapping region is increased or decreased, implying the existence of a (Anobile et al., 2016). To date, this mechanism has been evidenced only by adaptation. Here, we extend our finding by leveraging on a well-established covariance technique, used to unveil and characterize 'channels' for basic visual features such as colour, motion, contrast, and spatial frequency. Participants were required to press rapidly a key a specific number of times, without counting. We then correlated the precision of reproduction for various target number presses between participants. The results showed high positive correlations for nearby target numbers, scaling down with numerical distance, implying tuning selectivity. Factor analysis identified two factors, one for low and the other for higher numbers. Principal component analysis revealed two bell-shaped covariance channels, peaking at different numerical values. Two control experiments ruled out the role of non-numerical strategies based on tapping frequency and response duration. These results reinforce our previous reports based on adaptation, and further suggest the existence of at least two sensorimotor number channels responsible for translating symbolic numbers into action sequences.

摘要

我们之前已经证明,在手指轻敲几秒钟适应后,靠近轻敲区域显示的空间数组和视觉对象的时间序列的感知数量会增加或减少,这意味着存在一种(Anobile 等人,2016 年)。到目前为止,这种机制仅通过适应得到了证明。在这里,我们通过利用一种成熟的协方差技术扩展了我们的发现,该技术用于揭示和表征基本视觉特征(如颜色、运动、对比度和空间频率)的“通道”。参与者被要求快速按下特定数量的键,而无需计数。然后,我们在参与者之间比较了各种目标数量的按压力度的再现精度。结果表明,附近目标数量的相关性很高,随着数值距离的增加而降低,这表明存在调谐选择性。因子分析确定了两个因素,一个用于低数值,另一个用于更高数值。主成分分析揭示了两个钟形协方差通道,峰值出现在不同的数值上。两个对照实验排除了基于敲击频率和响应持续时间的非数值策略的作用。这些结果强化了我们基于适应的先前报告,并进一步表明存在至少两个感觉运动数量通道,负责将符号数量转换为动作序列。

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