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高阶颜色机制:来自锥体对比度空间噪声掩蔽实验的证据。

Higher order color mechanisms: evidence from noise-masking experiments in cone contrast space.

作者信息

Hansen Thorsten, Gegenfurtner Karl R

机构信息

Department of Psychology, Justus Liebig University Gießen, Gießen, Germany.

出版信息

J Vis. 2013 Jan 23;13(1):26. doi: 10.1167/13.1.26.

Abstract

This study addresses a fundamental question concerning the number of cortical, i.e., higher order mechanisms in color vision. The initial subcortical stages in color vision can be described by three cone mechanisms, S, M, L, and three pairs of second-stage mechanisms (achromatic L + M and -L - M, chromatic S - (L + M) and -S + (L + M), and chromatic L - M and M - L). The further mechanistic description of cortical color vision is controversial. On the one hand, numerous studies that defined their stimuli in a color-opponent Derrington-Krauskopf-Lennie (DKL) color space found evidence for higher order mechanisms. On the other hand, some studies that defined their stimuli in cone contrast (CC) space failed to find such evidence. Here we show that this failure was due to a restricted choice of stimuli. We used a noise-masking paradigm to measure discrimination thresholds for textured patterns modulated along chromatic directions in CC space. Unlike previous studies we defined noise directions in DKL space and converted them to CC space. When the noise contrast was sufficiently high we found selective masking, but this did not occur when the noise contrast was low. Selective masking indicates higher order mechanisms, since so far no alternative model has been proposed. Previous studies in CC space failed to find selective masking due to the low contrast of the noise and due to the restricted choice of perceptually highly similar noise directions that mainly stimulated the second-stage mechanisms. We conclude that cortical color vision is governed by higher order mechanisms.

摘要

本研究探讨了一个关于颜色视觉中皮质(即高阶机制)数量的基本问题。颜色视觉的初始皮质下阶段可以由三种视锥机制S、M、L以及三对第二阶段机制来描述(非彩色L + M和-L - M,彩色S - (L + M)和-S + (L + M),以及彩色L - M和M - L)。对皮质颜色视觉的进一步机制描述存在争议。一方面,许多在颜色对立的德林顿-克劳斯科普夫-伦尼(DKL)颜色空间中定义其刺激的研究发现了高阶机制的证据。另一方面,一些在视锥对比度(CC)空间中定义其刺激的研究未能找到此类证据。在这里,我们表明这种失败是由于刺激选择受限。我们使用噪声掩蔽范式来测量在CC空间中沿彩色方向调制的纹理图案的辨别阈值。与之前的研究不同,我们在DKL空间中定义噪声方向并将其转换为CC空间。当噪声对比度足够高时,我们发现了选择性掩蔽,但当噪声对比度低时则没有发生。选择性掩蔽表明存在高阶机制,因为到目前为止还没有提出替代模型。之前在CC空间中的研究由于噪声对比度低以及主要刺激第二阶段机制的在感知上高度相似的噪声方向选择受限,未能找到选择性掩蔽。我们得出结论,皮质颜色视觉受高阶机制支配。

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