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人类外侧膝状核中的单眼信号反映了克雷克-康斯威特-奥布赖恩效应。

Monocular signals in human lateral geniculate nucleus reflect the Craik-Cornsweet-O'Brien effect.

作者信息

Anderson Elaine J, Dakin Steven C, Rees Geraint

机构信息

Wellcome Trust Centre for Neuroimaging, Institute of Neurology, University College London, London, UK.

出版信息

J Vis. 2009 Nov 19;9(12):14.1-18. doi: 10.1167/9.12.14.

Abstract

The human visual system has a remarkable ability to accurately estimate the relative brightness of adjacent objects despite large variations in illumination. However, the lightness of two identical equiluminant gray regions can appear quite different when a light-dark luminance transition falls between them. This illusory brightness "filling-in" phenomenon, the Craik-Cornsweet-O'Brien (CCOB) illusion, exposes fundamental assumptions made by the visual system in estimating lightness, but its neural basis remains unclear. While the responses of high-level visual cortex can be correlated with perception of the CCOB, simple computational models suggest that the effect may originate from a much lower level, possibly subcortical. Here, we used high spatial resolution functional magnetic resonance imaging to show that the CCOB illusion is strongly correlated with signals recorded from the human lateral geniculate nucleus. Moreover, presenting the light and dark luminance transitions that induce the CCOB effect separately to each eye abolishes the illusion, suggesting that it depends on eye-specific signals. Our observations suggest that the CCOB effect arises from signals in populations of monocular neurons very early in the human geniculostriate visual pathway.

摘要

尽管光照存在很大变化,但人类视觉系统具有准确估计相邻物体相对亮度的卓越能力。然而,当明暗亮度过渡出现在两个相同的等亮度灰色区域之间时,它们的明度可能会显得截然不同。这种虚幻的亮度“填充”现象,即克雷克-科恩斯威特-奥布赖恩(CCOB)错觉,揭示了视觉系统在估计明度时所做的基本假设,但其神经基础仍不清楚。虽然高级视觉皮层的反应可能与CCOB的感知相关,但简单的计算模型表明,这种效应可能起源于更低的水平,可能是皮层下水平。在这里,我们使用高空间分辨率功能磁共振成像来表明,CCOB错觉与从人类外侧膝状体记录的信号密切相关。此外,分别向每只眼睛呈现诱发CCOB效应的明暗亮度过渡会消除错觉,这表明它依赖于特定眼睛的信号。我们的观察结果表明,CCOB效应源于人类膝状纹状体视觉通路中非常早期的单眼神经元群体中的信号。

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