Distinct serial dependence between small and large numerosity processing.

IF 2.2 3区 心理学 Q2 PSYCHOLOGY, EXPERIMENTAL
Yue Huang, Haokun Li, Shiming Qiu, Xianfeng Ding, Min Li, Wangjuan Liu, Zhao Fan, Xiaorong Cheng
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Abstract

The serial dependence effect (SDE) is a perceptual bias where current stimuli are perceived as more similar to recently seen stimuli, possibly enhancing the stability and continuity of visual perception. Although SDE has been observed across many visual features, it remains unclear whether humans rely on a single mechanism of SDE to support numerosity processing across two distinct numerical ranges: subitizing (i.e., small numerosity processing, likely related to early object recognition) and estimation (i.e., large numerosity processing, likely related to ensemble numerosity extraction). Here, we show that subitizing and estimation exhibit distinct SDE patterns. Subitizing is characterized by an asymmetric SDE, whereas estimation demonstrates a symmetric SDE. Specifically, in subitizing, the SDE occurs only when the current magnitude is smaller than the previous magnitude but not when it is larger. In contrast, the SDE in estimation is present in both scenarios. We propose that these differences arise from distinct underlying mechanisms. A perceptual mechanism-namely, a 'temporal hysteresis' account, can explain the asymmetrical SDE in subitizing since object individuation resources are easily activated but resistant to deactivation. Conversely, a combination of perceptual and post-perceptual mechanisms can account for the SDEs in estimation, as both perceptual and post-perceptual interference can reduce the SDEs. Critically, a novel type of SDE characterized by reduced processing precision is found in subitizing only, implying that the continuity and stability of numerical processing can be dissociable in dynamic situations where numerical information is integrated over time. Our findings reveal the multifaceted nature of SDE mechanisms and suggest their engagement with cognitive modules likely subserving different functionalities.

小数和大数处理之间具有明显的序列依赖性。
序列依赖效应(SDE)是一种感知偏差,即当前的刺激被认为与最近看到的刺激更相似,可能会增强视觉感知的稳定性和连续性。尽管SDE已经在许多视觉特征中被观察到,但尚不清楚人类是否依赖于SDE的单一机制来支持两个不同数值范围的数字处理:细分(即小数字处理,可能与早期目标识别有关)和估计(即大数字处理,可能与集合数字提取有关)。在这里,我们展示了细分和估计表现出不同的SDE模式。细分的特点是不对称SDE,而估计的特点是对称SDE。具体来说,在细分中,SDE仅在当前量级小于前一个量级时发生,而在当前量级大于前一个量级时不发生。相反,估计中的SDE在两种情况下都存在。我们认为这些差异是由不同的潜在机制引起的。一种感知机制,即“时间滞后”解释,可以解释不对称的SDE,因为对象个性化资源很容易被激活,但不易被停用。相反,知觉和后知觉机制的结合可以解释估计中的sde,因为知觉和后知觉干扰都可以降低sde。关键的是,一种以加工精度降低为特征的新型SDE仅在细分中被发现,这意味着数值处理的连续性和稳定性在数值信息随时间集成的动态情况下可以分离。我们的研究结果揭示了SDE机制的多面性,并表明它们与认知模块的参与可能服务于不同的功能。
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来源期刊
CiteScore
5.10
自引率
8.70%
发文量
137
期刊介绍: Psychological Research/Psychologische Forschung publishes articles that contribute to a basic understanding of human perception, attention, memory, and action. The Journal is devoted to the dissemination of knowledge based on firm experimental ground, but not to particular approaches or schools of thought. Theoretical and historical papers are welcome to the extent that they serve this general purpose; papers of an applied nature are acceptable if they contribute to basic understanding or serve to bridge the often felt gap between basic and applied research in the field covered by the Journal.
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