分心者对彩色目标的集合感知受色调相似性的影响,而不是受类别同一性的影响。

IF 2 4区 心理学 Q2 OPHTHALMOLOGY
Lari S Virtanen, Toni P Saarela, Maria Olkkonen
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引用次数: 0

摘要

色彩可用于将相似元素分组,并对这些分组形成色彩的集合感知。然而,在现实生活中,颜色相似的元素往往在空间上穿插在其他元素之间,并在背景中被看到。要对这些元素形成集合感知,就需要分割出正确的颜色信号进行整合。人类视觉系统能做到这一点吗?我们研究了观察者能否从目标色调分布中的干扰物中提取出集合平均色调,以及目标色调和干扰色调之间的颜色类别边界是否有助于集合色调的形成。观察者能够有选择性地判断目标集合平均色调,但分散色调的存在给集合估计增加了噪音,并导致知觉偏差。干扰色调与目标色调越相似,估计值的噪声就越大,这可能反映了两个色调集合的分割不完整或不准确。然而,名义上距离相等的干扰物之间的不对称性以及个体差异的显著性表明,除了目标物和干扰物分布的简单混合之外,还有其他因素。最后,我们没有发现分类促进选择性集合色调形成的证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ensemble percepts of colored targets among distractors are influenced by hue similarity, not categorical identity.

Color can be used to group similar elements, and ensemble percepts of color can be formed for such groups. In real-life settings, however, elements of similar color are often spatially interspersed among other elements and seen against a background. Forming an ensemble percept of these elements would require the segmentation of the correct color signals for integration. Can the human visual system do this? We examined whether observers can extract the ensemble mean hue from a target hue distribution among distractors and whether a color category boundary between target and distractor hues facilitates ensemble hue formation. Observers were able to selectively judge the target ensemble mean hue, but the presence of distractor hues added noise to the ensemble estimates and caused perceptual biases. The more similar the distractor hues were to the target hues, the noisier the estimates became, possibly reflecting incomplete or inaccurate segmentation of the two hue ensembles. Asymmetries between nominally equidistant distractors and substantial individual variability, however, point to additional factors beyond simple mixing of target and distractor distributions. Finally, we found no evidence for categorical facilitation in selective ensemble hue formation.

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来源期刊
Journal of Vision
Journal of Vision 医学-眼科学
CiteScore
2.90
自引率
5.60%
发文量
218
审稿时长
3-6 weeks
期刊介绍: Exploring all aspects of biological visual function, including spatial vision, perception, low vision, color vision and more, spanning the fields of neuroscience, psychology and psychophysics.
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