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视力障碍为自我运动感知提供新的见解。

Vision Impairment Provides New Insight Into Self-Motion Perception.

机构信息

School of Optometry and Vision Science, University of New South Wales, Sydney, Australia.

Centre for Eye Health, University of New South Wales, Sydney, Australia.

出版信息

Invest Ophthalmol Vis Sci. 2021 Feb 1;62(2):4. doi: 10.1167/iovs.62.2.4.

Abstract

PURPOSE

Leading causes of irreversible blindness such as age-related macular degeneration (AMD) and glaucoma can, respectively, lead to central or peripheral vision loss. The ability of sufferers to process visual motion information can be impacted even during early stages of eye disease. We used head-mounted display virtual reality as a tool to better understand how vision changes caused by eye diseases directly affect the processing of visual information critical for self-motion perception.

METHODS

Participants with intermediate AMD or early manifest glaucoma with near-normal visual acuities and visual fields were recruited for this study. We examined their experiences of self-motion in depth (linear vection), spatial presence, and cybersickness when viewing radially expanding patterns of optic flow simulating different speeds of self-motion in depth. Viewing was performed with the head stationary (passive condition) or while making lateral-sway head movements (active conditions).

RESULTS

Participants with AMD (i.e., central visual field loss) were found to have greater vection strength and spatial presence, compared to participants with normal visual fields. However, participants with glaucoma (i.e., peripheral visual field loss) were found to have lower vection strength and spatial presence, compared to participants with normal visual fields. Both AMD and glaucoma groups reported reduced severity in cybersickness compared to healthy normals.

CONCLUSIONS

These findings strongly support the view that perceived self-motion is differentially influenced by peripheral versus central vision loss, and that patients with different visual field defects are oppositely biased when processing visual cues to self-motion perception.

摘要

目的

与年龄相关的黄斑变性(AMD)和青光眼等导致不可逆转失明的主要原因分别可导致中心或周边视力丧失。即使在眼病的早期阶段,患者处理视觉运动信息的能力也可能受到影响。我们使用头戴式显示器虚拟现实作为一种工具,以更好地了解由眼病引起的视力变化如何直接影响自我运动感知的关键视觉信息处理。

方法

本研究招募了具有中度 AMD 或早期显性青光眼且视力和视野接近正常的参与者。我们深入研究了他们在观看模拟不同深度自我运动速度的辐射状扩展光流图案时的自我运动体验(线性运动错觉)、空间存在感和网络晕动症。观看时头部保持静止(被动状态)或进行侧向摇摆头部运动(主动状态)。

结果

与具有正常视野的参与者相比,患有 AMD(即中心视野丧失)的参与者发现运动错觉强度和空间存在感更大。然而,与具有正常视野的参与者相比,患有青光眼(即周边视野丧失)的参与者发现运动错觉强度和空间存在感更低。AMD 和青光眼组报告的网络晕动症严重程度均低于健康对照组。

结论

这些发现有力地支持了这样一种观点,即感知到的自我运动受到周边和中心视力丧失的不同影响,并且具有不同视野缺陷的患者在处理自我运动感知的视觉线索时存在相反的偏向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a422/7862735/0607309257c9/iovs-62-2-4-f001.jpg

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