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Interaction between Bottom-up Saliency and Top-down Control: How Saliency Maps Are Created in the Human Brain

机译:自下而上的显着性与自上而下的控制之间的相互作用:如何在人脑中创建显着性图

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Whether an object captures our attention depends on its bottom-up salience, that is, how different it is compared with Its neighbors, and top-down control, that is, our current inner goals. At which neuronal stage they interact to guide behavior is still unknown. En a functional magnetic resonance imaging study, we found evidence for a hierarchy of saliency maps in human early visual cortex (V1 to hV4) and identified where bottom-up saliency interacts with top-down control: V1 represented pure bottom-up signals, V2 was only responsive to top-down modulations, and in hV4 bottom-up saliency and top-down control converged. Two distinct cerebral networks exerted top-down control: distractor suppression engaged the left intraparietal sulcus, while target enhancement involved the frontal eye field and lateral occipital cortex. Hence, attentional selection is implemented in integrated maps in visual cortex, Which provide precise topographic information about target-distractor locations thus allowing for successful visual search.
机译:一个对象是否引起我们的注意,取决于其自下而上的显着性,即与邻居相比有多大差异,以及自上而下的控制即我们当前的内部目标。它们在哪个神经元阶段相互作用以指导行为仍是未知的。在功能性磁共振成像研究中,我们发现了人类早期视觉皮层(V1至hV4)中显着性图层次结构的证据,并确定了自下而上的显着性与自上而下的控件相互作用的地方:V1代表纯的自下而上的信号,V2 HV4仅对自上而下的调制作出响应,并且在hV4中自下而上的显着性和自上而下的控制融合。有两个截然不同的大脑网络进行了自上而下的控制:牵开器抑制作用在左顶壁沟内,而目标增强涉及额叶视野和枕叶外侧皮质。因此,注意选择是在视觉皮层中的集成地图中实现的,该地图提供了有关目标分散器位置的精确地形信息,从而可以成功进行视觉搜索。

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