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人类自然视觉中低层位置和方向信息的编码。

Coding of low-level position and orientation information in human naturalistic vision.

机构信息

Department of Psychology, University of Copenhagen, Copenhagen, Denmark.

Department of Psychology, Northeastern University, Boston, Massachusetts, United States of America.

出版信息

PLoS One. 2019 Feb 11;14(2):e0212141. doi: 10.1371/journal.pone.0212141. eCollection 2019.

Abstract

Orientation and position of small image segments are considered to be two fundamental low-level attributes in early visual processing, yet their encoding in complex natural stimuli is underexplored. By measuring the just-noticeable differences in noise perturbation, we investigated how orientation and position information of a large number of local elements (Gabors) were encoded separately or jointly. Importantly, the Gabors composed various classes of naturalistic stimuli that were equated by all low-level attributes and differed only in their higher-order configural complexity and familiarity. Although unable to consciously tell apart the type of perturbation, observers detected orientation and position noise significantly differently. Furthermore, when the Gabors were perturbed by both types of noise simultaneously, performance adhered to a reliability-based optimal probabilistic combination of individual attribute noises. Our results suggest that orientation and position are independently coded and probabilistically combined for naturalistic stimuli at the earliest stage of visual processing.

摘要

小图像段的方向和位置被认为是早期视觉处理中的两个基本的低级属性,但它们在复杂自然刺激中的编码方式还未得到充分探索。通过测量噪声干扰的可察觉差异,我们研究了大量局部元素(Gabor 滤波器)的方向和位置信息是如何分别或共同编码的。重要的是,这些 Gabor 滤波器组成了各种类别的自然主义刺激,它们在所有低水平属性上是等同的,只有在更高阶的结构复杂性和熟悉度上有所不同。尽管观察者无法有意识地分辨出干扰的类型,但他们能显著地区分出对方向和位置噪声的检测。此外,当 Gabor 滤波器同时受到两种类型的噪声干扰时,性能遵循个体属性噪声的基于可靠性的最优概率组合。我们的结果表明,在视觉处理的最早阶段,方向和位置是独立编码的,并以概率方式对自然主义刺激进行组合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd9c/6370245/c600b4dff936/pone.0212141.g001.jpg

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