Cortical processing of color: Chromatic visual evoked potentials

IF 1.5 4区 心理学 Q4 NEUROSCIENCES
Robert Shapley , Valerie Nunez , James Gordon
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引用次数: 0

Abstract

Evoked potentials measured from human visual cortex reveal that, in humans as in other primates, color is represented in the cortex mostly by neurons that are spatially-tuned. This means that color perception is most affected by spatial patterns of color and by the color difference across the boundaries of colored regions. The evidence from cortical evoked responses also supports the concept that the cortex does away with the strict segregation of color and luminance signals, and of red-green vs blue-yellow signals, that is present in its thalamic input. Rather, all combinations of cardinal direction signals are used by the population of spatially-tuned, color-responsive cortical neurons in the visual cortex. The neural populations that combine color signals are sometimes called Higher Order Color Mechanisms. These fundamental findings about color processing in the cortex challenge the classical theory of opponent colors. Also, they show that color is computed in combination with space and form, not separately.
颜色的皮质加工:彩色视觉诱发电位
从人类视觉皮层测量的诱发电位显示,在人类和其他灵长类动物中,颜色主要是通过空间调谐的神经元在皮层中表示的。这意味着色彩感知最受色彩的空间模式和色彩区域边界上的色差影响。来自皮层诱发反应的证据也支持这样一个概念,即皮层消除了存在于丘脑输入中的颜色和亮度信号的严格隔离,以及红绿和蓝黄信号的隔离。相反,所有基本方向信号的组合都是由视觉皮层中空间调谐的、对颜色敏感的皮层神经元使用的。结合颜色信号的神经群有时被称为高阶颜色机制。这些关于大脑皮层颜色处理的基本发现挑战了传统的对立色理论。此外,它们还表明,颜色是与空间和形式结合在一起计算的,而不是单独计算的。
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来源期刊
Vision Research
Vision Research 医学-神经科学
CiteScore
3.70
自引率
16.70%
发文量
111
审稿时长
66 days
期刊介绍: Vision Research is a journal devoted to the functional aspects of human, vertebrate and invertebrate vision and publishes experimental and observational studies, reviews, and theoretical and computational analyses. Vision Research also publishes clinical studies relevant to normal visual function and basic research relevant to visual dysfunction or its clinical investigation. Functional aspects of vision is interpreted broadly, ranging from molecular and cellular function to perception and behavior. Detailed descriptions are encouraged but enough introductory background should be included for non-specialists. Theoretical and computational papers should give a sense of order to the facts or point to new verifiable observations. Papers dealing with questions in the history of vision science should stress the development of ideas in the field.
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