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周边视野中静态和动态刺激评估的瞳孔大小。

Pupil size in the evaluation of static and dynamic stimuli in peripheral vision.

机构信息

Institute of Sports Science, University of Rostock, Rostock, Germany.

Institute of Exercise Training and Sport Informatics, German Sport University Cologne, Cologne, Germany.

出版信息

PLoS One. 2021 May 10;16(5):e0250027. doi: 10.1371/journal.pone.0250027. eCollection 2021.

Abstract

It has been evidenced that in attention-window tasks, the participants fixate on the center of a screen while inspecting two stimuli that appear at the same time in parafoveal vision. Such tasks have successfully been used to estimate a person's breadth of attention under various conditions. While behavioral investigations of visual attention have often made use of response accuracy, recent research has shown that the pupil size can also be used to track shifts of attention to the periphery. The main finding of previous studies is that the harder the evaluation of the stimuli becomes, e.g., because they appear farther away from the central fixation point, the stronger the pupils dilate. In this paper, we present experimental data suggesting that in an attention-window task, the pupil size can also be used to assess whether the participants attend to static, non-moving, or dynamic, moving stimuli. That is, regression models containing information on presentation mode (static vs. dynamic) and the visual angle between spatially separated stimuli better predict accuracy of perception and pupil dilation than model without these sources of information. This finding is useful for researchers who aim at understanding the human attentional system, including potential differences in its sensitivity to static and dynamic objects.

摘要

已有证据表明,在注意窗口任务中,参与者在注视屏幕中心的同时,会检查出现在周边视野中的两个同时出现的刺激物。此类任务已成功用于在各种条件下估计人的注意力广度。虽然视觉注意力的行为研究经常利用反应准确性,但最近的研究表明,瞳孔大小也可用于跟踪注意力向周边的转移。以前研究的主要发现是,评估刺激物的难度越大,例如,因为它们出现在离中央注视点越远的地方,瞳孔就会扩张得越强烈。在本文中,我们提出了实验数据,表明在注意窗口任务中,瞳孔大小也可用于评估参与者是否关注静态、非移动的或动态、移动的刺激物。也就是说,包含呈现模式(静态与动态)和空间分离刺激物之间视角信息的回归模型比不包含这些信息源的模型更好地预测感知准确性和瞳孔扩张。这一发现对于旨在理解人类注意力系统的研究人员很有用,包括其对静态和动态物体的敏感性的潜在差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fd68/8109806/ec5f94ceab73/pone.0250027.g001.jpg

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