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黄斑变性的双眼视敏度缺损图。

Mapping the binocular scotoma in macular degeneration.

机构信息

Smith-Kettlewell Eye Research Institute, San Francisco, CA, USA.

出版信息

J Vis. 2021 Mar 1;21(3):9. doi: 10.1167/jov.21.3.9.

Abstract

When the scotoma is binocular in macular degeneration (MD), it often obscures objects of interest, causing individuals to miss information. To map the binocular scotoma as precisely as current methods that map the monocular scotoma, we propose an iterative eye-tracker method. Study participants included nine individuals with MD and four age-matched controls. We measured the extent of the monocular scotomata using a scanning laser ophthalmoscope/optical coherence tomography (SLO/OCT). Then, we precisely mapped monocular and binocular scotomata with an eye tracker, while fixation was monitored. Participants responded whenever they detected briefly flashed dots, which were first presented on a coarse grid, and then at manually selected points to refine the shape and edges of the scotoma. Monocular scotomata measured in the SLO and eye tracker are highly similar, validating the eye-tracking method for scotoma mapping. Moreover, all participants used clustered fixation loci corresponding to their dominant preferred fixation locus. Critically, for individuals with binocular scotomata, the binocular map from the eye tracker was consistent with the overlap of the monocular scotoma profiles from the SLO. Thus, eye-tracker-based perimetry offers a reliable and sensitive tool for measuring both monocular and binocular scotomata, unlike the SLO/OCT that is limited to monocular viewing.

摘要

当黄斑变性 (MD) 的暗点为双眼性时,它常常会遮挡感兴趣的物体,导致个体错过信息。为了尽可能精确地绘制出与当前用于绘制单眼暗点的方法相媲美的双眼暗点图,我们提出了一种迭代眼动追踪方法。研究参与者包括 9 名 MD 患者和 4 名年龄匹配的对照者。我们使用扫描激光检眼镜/光学相干断层扫描 (SLO/OCT) 来测量单眼暗点的范围。然后,我们使用眼动仪精确地绘制单眼和双眼暗点图,同时监测注视点。当参与者检测到短暂闪烁的点时,他们会做出反应,这些点首先在粗网格上呈现,然后在手动选择的点上呈现,以细化暗点的形状和边缘。SLO 和眼动仪测量的单眼暗点非常相似,验证了眼动追踪法用于暗点测绘的有效性。此外,所有参与者都使用与他们的主导首选注视点相对应的聚集注视点。关键的是,对于患有双眼暗点的个体,眼动仪绘制的双眼图与 SLO 中单眼暗点轮廓的重叠一致。因此,与仅适用于单眼观察的 SLO/OCT 不同,基于眼动仪的视野测量提供了一种可靠且敏感的测量单眼和双眼暗点的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a10f/7937995/046dd6eca02b/jovi-21-3-9-f001.jpg

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