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Attention to Color Sharpens Neural Population Tuning via Feedback Processing in the Human Visual Cortex Hierarchy

机译:对颜色的注意通过人类视觉皮层层次结构中的反馈处理来锐化神经人口调整。

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摘要

Attention can facilitate the selection of elementary object features such as color, orientation, or motion. This is referred to as feature-based attention and it is commonly attributed to a modulation of the gain and tuning of feature-selective units in visual cortex. Although gain mechanisms are well characterized, little is known about the cortical processes underlying the sharpening of feature selectivity. Here, we show with high-resolution magnetoencephalography in human observers (men and women) that sharpened selectivity for a particular color arises from feedback processing in the human visual cortex hierarchy. To assess color selectivity, we analyze the response to a color probe that varies in color distance from an attended color target. We find that attention causes an initial gain enhancement in anterior ventral extrastriate cortex that is coarsely selective for the target color and transitions within ∼100 ms into a sharper tuned profile in more posterior ventral occipital cortex. We conclude that attention sharpens selectivity over time by attenuating the response at lower levels of the cortical hierarchy to color values neighboring the target in color space. These observations support computational models proposing that attention tunes feature selectivity in visual cortex through backward-propagating attenuation of units less tuned to the target.>SIGNIFICANCE STATEMENT Whether searching for your car, a particular item of clothing, or just obeying traffic lights, in everyday life, we must select items based on color. But how does attention allow us to select a specific color? Here, we use high spatiotemporal resolution neuromagnetic recordings to examine how color selectivity emerges in the human brain. We find that color selectivity evolves as a coarse to fine process from higher to lower levels within the visual cortex hierarchy. Our observations support computational models proposing that feature selectivity increases over time by attenuating the responses of less-selective cells in lower-level brain areas. These data emphasize that color perception involves multiple areas across a hierarchy of regions, interacting with each other in a complex, recursive manner.
机译:注意可以促进基本对象特征(例如颜色,方向或运动)的选择。这被称为基于特征的注意力,通常归因于视觉皮质中增益的调制和特征选择单元的调整。尽管增益机制已得到很好的表征,但对于特征选择性锐化的潜在皮层过程知之甚少。在这里,我们通过高分辨率的脑磁图在人类观察者(男人和女人)中显示出,对特定颜色的选择性提高是由于人类视觉皮层层次结构中的反馈处理所致。为了评估颜色的选择性,我们分析了对颜色探针的响应,该颜色探针的颜色距离与所关注的颜色目标之间的距离不同。我们发现注意力引起前腹侧腹侧纹状体皮质的初始增益增强,对目标颜色具有粗略的选择,并在约100 ms内过渡到更后侧腹枕部皮层的更清晰的轮廓。我们得出结论,注意力通过减弱皮层层次结构中较低级别对颜色空间中与目标相邻的颜色值的响应而随着时间的流逝提高了选择性。这些观察结果支持计算模型,该模型建议注意力通过减少向目标微调的单位的向后传播衰减来调节视觉皮层的选择性。>重要声明是搜索汽车,一件特定的衣服还是只是寻找遵守交通信号灯,在日常生活中,我们必须根据颜色选择项目。但是注意力如何使我们选择特定的颜色?在这里,我们使用高时空分辨率的神经磁记录来检查颜色选择性在人脑中如何出现。我们发现颜色选择性是在视觉皮层层次结构中从高到低的水平从粗到细的过程演变而来的。我们的观察结果支持计算模型,该模型建议通过降低较低级别的大脑区域中选择性较低的细胞的响应,功能选择性随时间增加。这些数据强调色彩感知涉及区域层次结构中的多个区域,它们以复杂的递归方式相互交互。

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