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Superior colliculus neurons encode a visual saliency map during free viewing of natural dynamic video

机译:在免费观看自然动态视频的过程中上丘神经元对视觉显着图进行编码

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摘要

Models of visual attention postulate the existence of a saliency map whose function is to guide attention and gaze to the most conspicuous regions in a visual scene. Although cortical representations of saliency have been reported, there is mounting evidence for a subcortical saliency mechanism, which pre-dates the evolution of neocortex. Here, we conduct a strong test of the saliency hypothesis by comparing the output of a well-established computational saliency model with the activation of neurons in the primate superior colliculus (SC), a midbrain structure associated with attention and gaze, while monkeys watched video of natural scenes. We find that the activity of SC superficial visual-layer neurons (SCs), specifically, is well-predicted by the model. This saliency representation is unlikely to be inherited from fronto-parietal cortices, which do not project to SCs, but may be computed in SCs and relayed to other areas via tectothalamic pathways.
机译:视觉注意力模型假设存在显着图,该显着图的功能是引导注意力并凝视视觉场景中最显眼的区域。尽管已经报道了显着性的皮层表示,但是越来越多的证据表明皮层下显着性机制早于新皮层的进化。在这里,我们通过比较公认的计算显着性模型的输出与灵长类上丘(SC)中与注意和凝视相关的中脑结构的神经元的激活来比较显着性假设,从而对显着性假设进行了强有力的检验。自然场景。我们发现,SC浅层视觉层神经元(SCs)的活动,特别是,由模型很好地预测。这种显着性表示不太可能从额顶皮层继承,额叶顶皮层不会投射到SC,但可以在SC中进行计算并通过构造丘脑途径中继到其他区域。

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