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眼球运动的时间动态与场景复杂性和杂乱程度的差异有关。

Temporal dynamics of eye movements are related to differences in scene complexity and clutter.

作者信息

Wu David W-L, Anderson Nicola C, Bischof Walter F, Kingstone Alan

机构信息

Department of Psychology, University of British Columbia, Vancouver, British Columbia, Canada.

Department of Cognitive Psychology, Vrije Universiteit Amsterdam, Amsterdam, The Netherlands.

出版信息

J Vis. 2014 Aug 11;14(9):8. doi: 10.1167/14.9.8.

Abstract

Recent research has begun to explore not just the spatial distribution of eye fixations but also the temporal dynamics of how we look at the world. In this investigation, we assess how scene characteristics contribute to these fixation dynamics. In a free-viewing task, participants viewed three scene types: fractal, landscape, and social scenes. We used a relatively new method, recurrence quantification analysis (RQA), to quantify eye movement dynamics. RQA revealed that eye movement dynamics were dependent on the scene type viewed. To understand the underlying cause for these differences we applied a technique known as fractal analysis and discovered that complexity and clutter are two scene characteristics that affect fixation dynamics, but only in scenes with meaningful content. Critically, scene primitives-revealed by saliency analysis-had no impact on performance. In addition, we explored how RQA differs from the first half of the trial to the second half, as well as the potential to investigate the precision of fixation targeting by changing RQA radius values. Collectively, our results suggest that eye movement dynamics result from top-down viewing strategies that vary according to the meaning of a scene and its associated visual complexity and clutter.

摘要

最近的研究不仅开始探索眼睛注视的空间分布,还开始探索我们观察世界的时间动态。在这项研究中,我们评估场景特征如何影响这些注视动态。在自由观看任务中,参与者观看了三种场景类型:分形、风景和社会场景。我们使用了一种相对较新的方法,即递归定量分析(RQA),来量化眼动动态。RQA显示,眼动动态取决于所观看的场景类型。为了理解这些差异的潜在原因,我们应用了一种称为分形分析的技术,发现复杂性和杂乱是影响注视动态的两个场景特征,但仅在具有有意义内容的场景中如此。至关重要的是,由显著性分析揭示的场景基元对表现没有影响。此外,我们还探讨了RQA在试验的前半段和后半段之间的差异,以及通过改变RQA半径值来研究注视目标精度的潜力。总体而言,我们的结果表明,眼动动态源于自上而下的观看策略,这些策略会根据场景的意义及其相关的视觉复杂性和杂乱程度而有所不同。

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