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V4 视皮层中的等亮度细胞。

Equiluminance cells in visual cortical area v4.

机构信息

Department of Biological Structure and Washington National Primate Research Center, University of Washington, Seattle, Washington 98195, USA.

出版信息

J Neurosci. 2011 Aug 31;31(35):12398-412. doi: 10.1523/JNEUROSCI.1890-11.2011.

Abstract

We report a novel class of V4 neuron in the macaque monkey that responds selectively to equiluminant colored form. These "equiluminance" cells stand apart because they violate the well established trend throughout the visual system that responses are minimal at low luminance contrast and grow and saturate as contrast increases. Equiluminance cells, which compose ∼22% of V4, exhibit the opposite behavior: responses are greatest near zero contrast and decrease as contrast increases. While equiluminance cells respond preferentially to equiluminant colored stimuli, strong hue tuning is not their distinguishing feature-some equiluminance cells do exhibit strong unimodal hue tuning, but many show little or no tuning for hue. We find that equiluminance cells are color and shape selective to a degree comparable with other classes of V4 cells with more conventional contrast response functions. Those more conventional cells respond equally well to achromatic luminance and equiluminant color stimuli, analogous to color luminance cells described in V1. The existence of equiluminance cells, which have not been reported in V1 or V2, suggests that chromatically defined boundaries and shapes are given special status in V4 and raises the possibility that form at equiluminance and form at higher contrasts are processed in separate channels in V4.

摘要

我们报告了一类在猕猴大脑 V4 区中发现的新型神经元,它们对同亮度彩色形状有选择性响应。这些“同亮度”细胞与众不同,因为它们违反了整个视觉系统中一个既定的趋势,即响应在低亮度对比度下最小,随着对比度的增加而增长和饱和。同亮度细胞构成了 V4 的约 22%,其表现出相反的行为:响应在接近零对比度时最大,随着对比度的增加而减小。虽然同亮度细胞优先响应同亮度彩色刺激,但强烈的色调调谐并不是它们的特征——一些同亮度细胞确实表现出强烈的单峰色调调谐,但许多细胞对色调的调谐很小或没有。我们发现,同亮度细胞在颜色和形状选择方面与其他具有更传统对比度响应功能的 V4 细胞相当。那些更传统的细胞对非彩色亮度和同亮度颜色刺激的响应同样好,类似于在 V1 中描述的颜色亮度细胞。同亮度细胞的存在,在 V1 或 V2 中尚未被报道,这表明在 V4 中,色觉定义的边界和形状具有特殊地位,并提出了在 V4 中,同亮度和更高对比度下的形状可能在不同的通道中进行处理的可能性。

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