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人类早期视觉皮层中面孔图像的注意优先级图。

Attention Priority Map of Face Images in Human Early Visual Cortex.

机构信息

School of Psychological and Cognitive Sciences and Beijing Key Laboratory of Behavior and Mental Health,

Peking-Tsinghua Center for Life Sciences.

出版信息

J Neurosci. 2018 Jan 3;38(1):149-157. doi: 10.1523/JNEUROSCI.1206-17.2017. Epub 2017 Nov 13.

Abstract

Attention priority maps are topographic representations that are used for attention selection and guidance of task-related behavior during visual processing. Previous studies have identified attention priority maps of simple artificial stimuli in multiple cortical and subcortical areas, but investigating neural correlates of priority maps of natural stimuli is complicated by the complexity of their spatial structure and the difficulty of behaviorally characterizing their priority map. To overcome these challenges, we reconstructed the topographic representations of upright/inverted face images from fMRI BOLD signals in human early visual areas primary visual cortex (V1) and the extrastriate cortex (V2 and V3) based on a voxelwise population receptive field model. We characterized the priority map behaviorally as the first saccadic eye movement pattern when subjects performed a face-matching task relative to the condition in which subjects performed a phase-scrambled face-matching task. We found that the differential first saccadic eye movement pattern between upright/inverted and scrambled faces could be predicted from the reconstructed topographic representations in V1-V3 in humans of either sex. The coupling between the reconstructed representation and the eye movement pattern increased from V1 to V2/3 for the upright faces, whereas no such effect was found for the inverted faces. Moreover, face inversion modulated the coupling in V2/3, but not in V1. Our findings provide new evidence for priority maps of natural stimuli in early visual areas and extend traditional attention priority map theories by revealing another critical factor that affects priority maps in extrastriate cortex in addition to physical salience and task goal relevance: image configuration. Prominent theories of attention posit that attention sampling of visual information is mediated by a series of interacting topographic representations of visual space known as attention priority maps. Until now, neural evidence of attention priority maps has been limited to studies involving simple artificial stimuli and much remains unknown about the neural correlates of priority maps of natural stimuli. Here, we show that attention priority maps of face stimuli could be found in primary visual cortex (V1) and the extrastriate cortex (V2 and V3). Moreover, representations in extrastriate visual areas are strongly modulated by image configuration. These findings extend our understanding of attention priority maps significantly by showing that they are modulated, not only by physical salience and task-goal relevance, but also by the configuration of stimuli images.

摘要

注意优先级图是一种地形表示,用于在视觉处理过程中选择和指导与任务相关的行为。先前的研究已经在多个皮质和皮质下区域确定了简单人工刺激的注意优先级图,但由于自然刺激优先级图的空间结构复杂且行为特征困难,研究其神经相关性变得复杂。为了克服这些挑战,我们基于体素的群体感受野模型,从 fMRI BOLD 信号中重建了人类早期视觉区域初级视觉皮层 (V1) 和外纹状皮层 (V2 和 V3) 中直立/倒置面孔图像的地形表示。我们将行为特征描述为当受试者执行面孔匹配任务相对于执行相位随机化面孔匹配任务时的第一个扫视眼动模式。我们发现,无论受试者的性别如何,在 V1-V3 中从重建的地形表示中都可以预测出直立/倒置和随机化面孔之间的差异第一扫视眼动模式。对于直立面孔,从 V1 到 V2/3 的重建表示与眼动模式之间的耦合增加,而对于倒置面孔则没有发现这种效果。此外,面部倒置调制了 V2/3 中的耦合,但在 V1 中没有。我们的研究结果为早期视觉区域中自然刺激的优先级图提供了新的证据,并通过揭示除了物理显著性和任务目标相关性之外,影响外纹状皮层中优先级图的另一个关键因素:图像配置,扩展了传统的注意力优先级图理论。注意力采样的突出理论认为,视觉信息的注意力采样是由一系列相互作用的视觉空间的地形表示介导的,这些表示被称为注意力优先级图。到目前为止,关于自然刺激的注意力优先级图的神经证据仅限于涉及简单人工刺激的研究,关于自然刺激的优先级图的神经相关性仍然知之甚少。在这里,我们表明,面部刺激的注意力优先级图可以在初级视觉皮层 (V1) 和外纹状皮层 (V2 和 V3) 中找到。此外,外纹状视觉区域的表示受图像配置强烈调制。这些发现通过表明它们不仅受到物理显著性和任务目标相关性的调节,还受到刺激图像配置的调节,极大地扩展了我们对注意力优先级图的理解。

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本文引用的文献

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Attention in the real world: toward understanding its neural basis.现实世界中的注意力:迈向理解其神经基础。
Trends Cogn Sci. 2014 May;18(5):242-50. doi: 10.1016/j.tics.2014.02.004. Epub 2014 Mar 13.
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