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Decoding the Yellow of a Gray Banana

机译:解码灰色香蕉的黄色

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摘要

Some everyday objects are associated with a particular color, such as bananas, which are typically yellow. Behavioral studies show that perception of these so-called color-diagnostic objects is influenced by our knowledge of their typical color, referred to as memory color [1, 2]. However, neural representations of memory colors are unknown. Here we investigated whether memory color can be decoded from visual cortex activity when color-diagnostic objects are viewed as grayscale images. We trained linear classifiers to distinguish patterns of fMRI responses to four different hues. We found that activity in V1 allowed predicting the memory color of color-diagnostic objects presented in grayscale in naive participants performing a motion task. The results imply that higher areas feed back memory-color signals to Vi. When classifiers were trained on neural responses to some exemplars of color-diagnostic objects and tested on others, areas V4 and LOC also predicted memory colors. Representational similarity analysis showed that memory-color representations in V1 were correlated specifically with patterns in V4 but not LOC. Our findings suggest that prior knowledge is projected from midlevel visual regions onto primary visual cortex, consistent with predictive coding theory [3].
机译:一些日常用品与特定颜色相关联,例如香蕉,通常是黄色。行为研究表明,对这些所谓的颜色诊断对象的感知受我们对它们的典型颜色(称为记忆色)的了解的影响[1,2]。但是,记忆颜色的神经表示是未知的。在这里,我们研究了当将颜色诊断对象视为灰度图像时,是否可以从视觉皮层活动中解码记忆颜色。我们训练了线性分类器,以区分fMRI对四种不同色调的反应模式。我们发现,V1中的活动可以预测在执行运动任务的天真的参与者中以灰度显示的颜色诊断对象的记忆颜色。结果表明较高的区域将内存颜色信号反馈到Vi。当对分类器进行针对某些颜色诊断对象示例的神经反应训练,并对其他分类器进行测试时,区域V4和LOC也可以预测记忆颜色。代表性相似性分析表明,V1中的记忆颜色表示与V4中的模式特别相关,但与LOC无关。我们的发现表明,先验知识是从中层视觉区域投射到主要视觉皮层上的,与预测编码理论一致[3]。

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