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形式与表面皮层颜色系统的不同时间结构——来自色觉非线性 VEP 的证据。

Different temporal structure for form versus surface cortical color systems--evidence from chromatic non-linear VEP.

机构信息

Brain Sciences Institute, Swinburne University of Technology, Melbourne, Victoria, Australia.

出版信息

PLoS One. 2010 Dec 20;5(12):e15266. doi: 10.1371/journal.pone.0015266.

Abstract

Physiological studies of color processing have typically measured responses to spatially varying chromatic stimuli such as gratings, while psychophysical studies of color include color naming, color and light, as well as spatial and temporal chromatic sensitivities. This raises the question of whether we have one or several cortical color processing systems. Here we show from non-linear analysis of human visual evoked potentials (VEP) the presence of distinct and independent temporal signatures for form and surface color processing. Surface color stimuli produced most power in the second order Wiener kernel, indicative of a slowly recovering neural system, while chromatic form stimulation produced most power in the first order kernel (showing rapid recovery). We find end-spectral saturation-dependent signals, easily separable from achromatic signals for surface color stimuli. However physiological responses to form color stimuli, though varying somewhat with saturation, showed similar waveform components. Lastly, the spectral dependence of surface and form color VEP was different, with the surface color responses almost vanishing with yellow-grey isoluminant stimulation whereas the form color VEP shows robust recordable signals across all hues. Thus, surface and form colored stimuli engage different neural systems within cortex, pointing to the need to establish their relative contributions under the diverse chromatic stimulus conditions used in the literature.

摘要

颜色处理的生理研究通常测量对空间变化的色觉刺激的反应,例如光栅,而颜色的心理物理学研究包括颜色命名、颜色和光,以及空间和时间的色觉敏感性。这就提出了一个问题,即我们是否有一个或多个皮质颜色处理系统。在这里,我们通过对人类视觉诱发电位(VEP)的非线性分析,显示出形态和表面颜色处理存在明显且独立的时间特征。表面颜色刺激在二阶维纳核中产生最大的功率,表明是一个恢复缓慢的神经系统,而彩色形态刺激在一阶核中产生最大的功率(显示快速恢复)。我们发现与端光谱饱和度相关的信号,很容易与表面颜色刺激的非彩色信号区分开来。然而,形态颜色刺激的生理反应虽然随饱和度而有所变化,但表现出相似的波形成分。最后,表面和形态颜色 VEP 的光谱依赖性不同,表面颜色反应在黄灰色等亮度刺激下几乎消失,而形态颜色 VEP 在所有色调下都显示出强大的可记录信号。因此,表面和形态彩色刺激在皮质内涉及不同的神经系统,这表明需要根据文献中使用的各种色觉刺激条件来确定它们的相对贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2266/3004867/f648fdd03809/pone.0015266.g001.jpg

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