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基于特征的注意效应对物体感知的时间影响。

The timing of feature-based attentional effects during object perception.

机构信息

Department of Psychology, University of Toronto at Scarborough, Toronto, Ontario, Canada.

出版信息

Neuropsychologia. 2011 Oct;49(12):3406-18. doi: 10.1016/j.neuropsychologia.2011.08.017. Epub 2011 Aug 22.

Abstract

Allocating attention to basic features such as colour enhances perception of the respective features throughout the visual field. We have previously shown that feature-based attention also plays a role for more complex features required for object perception. To investigate at which level object perception is modulated by feature-based attention we recorded high-density event-related potentials (ERPs). Participants detected contour-defined objects or motion, and were informed to expect each feature dimension. Participants perceived contour-defined objects and motion better when they expected the congruent feature. This is consistent with modulation of the P1 when attending to lower-level features. For contours, modulation occurred at 290 ms, first at frontal electrodes and then at posterior sites, associated with sources in ventral visual areas accompanied by greater signal strength. This pattern of results is consistent with what has been observed in response to illusory contours. Our data provide novel insights into the contribution of feature-based attention to object perception that are associated with higher tier brain areas.

摘要

将注意力分配到颜色等基本特征上,可以增强整个视野中对相应特征的感知。我们之前已经表明,基于特征的注意力对于物体感知所需的更复杂特征也起着作用。为了研究基于特征的注意力对物体感知的调节作用,我们记录了高密度事件相关电位(ERP)。参与者检测轮廓定义的物体或运动,并被告知要期望每个特征维度。当参与者期望一致的特征时,他们对轮廓定义的物体和运动的感知更好。这与在关注较低层次特征时 P1 的调制是一致的。对于轮廓,调制发生在 290ms 时,首先在前额电极,然后在后部电极,与腹侧视觉区域中的源相关,并伴随着更强的信号强度。这种结果模式与对错觉轮廓的反应一致。我们的数据为基于特征的注意力对与更高层次大脑区域相关的物体感知的贡献提供了新的见解。

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