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观看行为中的空间偏差。

Spatial biases in viewing behavior.

作者信息

Ossandón José P, Onat Selim, König Peter

机构信息

Institute of Cognitive Science, University of Osnabrück, Osnabrück, Germany.

出版信息

J Vis. 2014 Feb 25;14(2):20. doi: 10.1167/14.2.20.

Abstract

Viewing behavior exhibits temporal and spatial structure that is independent of stimulus content and task goals. One example of such structure is horizontal biases, which are likely rooted in left-right asymmetries of the visual and attentional systems. Here, we studied the existence, extent, and mechanisms of this bias. Left- and right-handed subjects explored scenes from different image categories, presented in original and mirrored versions. We also varied the spatial spectral content of the images and the timing of stimulus onset. We found a marked leftward bias at the start of exploration that was independent of image category. This left bias was followed by a weak bias to the right that persisted for several seconds. This asymmetry was found in the majority of right-handers but not in left-handers. Neither low- nor high-pass filtering of the stimuli influenced the bias. This argues against mechanisms related to the hemispheric segregation of global versus local visual processing. Introducing a delay in stimulus onset after offset of a central fixation spot also had no influence. The bias was present even when stimuli were presented continuously and without any requirement to fixate, associated to both fixation- and saccade-contingent image changes. This suggests the bias is not caused by structural asymmetries in fixation control. Instead the pervasive horizontal bias is compatible with known asymmetries of higher-level attentional areas related to the detection of novel events.

摘要

观看行为呈现出与刺激内容和任务目标无关的时间和空间结构。这种结构的一个例子是水平偏差,它可能源于视觉和注意力系统的左右不对称。在这里,我们研究了这种偏差的存在、程度和机制。左撇子和右撇子受试者浏览了来自不同图像类别的场景,这些场景以原始版本和镜像版本呈现。我们还改变了图像的空间光谱内容和刺激开始的时间。我们发现在探索开始时存在明显的向左偏差,且与图像类别无关。这种向左偏差之后是持续数秒的微弱向右偏差。这种不对称在大多数右撇子中存在,但在左撇子中不存在。对刺激进行低通或高通滤波均不影响偏差。这与与全局和局部视觉处理的半球分离相关的机制相悖。在中央注视点偏移后引入刺激开始的延迟也没有影响。即使刺激持续呈现且无需注视,与注视和扫视相关的图像变化时,偏差依然存在。这表明偏差不是由注视控制中的结构不对称引起的。相反,普遍存在的水平偏差与与新事件检测相关的高级注意力区域的已知不对称性相符。

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