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单眼模糊会损害基于光流的航向判断。

Monocular blur impairs heading judgements from optic flow.

作者信息

Sheppard William E A, Coats Rachel O, Wilkie Richard M, Baraas Rigmor C

机构信息

School of Psychology, Faculty of Medicine and Health, University of Leeds, UK.

National Centre for Optics, Vision and Eye Care, Faculty of Health and Social Sciences, University of South-Eastern Norway, Kongsberg, Norway.

出版信息

Iperception. 2025 Feb 26;16(1):20416695251317148. doi: 10.1177/20416695251317148. eCollection 2025 Jan-Feb.

Abstract

Monocular blur sometimes impairs locomotion; however, it is not always clear when this will happen. Optic flow (the apparent motion of scene texture elements that occurs during self-motion) provides powerful signals about the direction of travel. Here, we test whether monocular blur impairs heading perception from optic flow compared to full vision under various levels of optic flow degradation. Participants ( = 52, mean age = 30 years) completed contrast sensitivity, visual acuity, and heading perception tasks with rich or degraded optic flow, with or without monocular blur (0.4 logMAR Bangerter filter over the non-dominant eye, full vision in the dominant eye). Heading perception was assessed using a browser-based task where the participants viewed a 3-second video consistent with self-motion over a textured ground plane (moving towards the horizon at an offset heading ranging from -20 to +20°) and identified the point on the horizon towards which they were travelling. The measures of each participant's performance were the absolute and directional angular error between the heading offset and their response. Monocular blur and degraded flow were associated with an increase in absolute heading error and a larger underestimation of heading angle, with the worst performance observed when monocular blur and degraded flow were combined. These results suggest that the impact of monocular blur on heading perception becomes apparent only when optic flow signals are weak (e.g., night-time driving). These findings support the theory that monocular blur and the richness of visual information interact to produce deficits in heading perception.

摘要

单眼模糊有时会妨碍行动;然而,这种情况何时会发生并不总是很清楚。光流(自我运动过程中场景纹理元素的表观运动)提供了关于行进方向的强大信号。在这里,我们测试在各种光流退化水平下,与全视力相比,单眼模糊是否会损害基于光流的航向感知。参与者(n = 52,平均年龄 = 30岁)完成了对比敏感度、视力和航向感知任务,任务中光流丰富或退化,有或没有单眼模糊(非优势眼使用0.4 logMAR邦格特滤光片,优势眼全视力)。使用基于浏览器的任务评估航向感知,参与者观看一段3秒的视频,视频内容是在有纹理的地平面上与自我运动一致的场景(以-20至+20°的偏移航向朝着地平线移动),并确定他们正在朝着地平线的哪个点行进。每个参与者的表现指标是航向偏移与他们的反应之间的绝对角误差和方向角误差。单眼模糊和退化的光流与绝对航向误差的增加以及航向角的更大低估有关,当单眼模糊和退化的光流同时出现时,表现最差。这些结果表明,单眼模糊对航向感知的影响只有在光流信号较弱时(例如夜间驾驶)才会明显。这些发现支持了单眼模糊和视觉信息丰富度相互作用导致航向感知缺陷的理论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/188e/11863211/11952d31241f/10.1177_20416695251317148-fig1.jpg

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