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在非人类灵长类实验性青光眼模型中,标准自动视野计大小 I 至 V 视觉敏感度所对应的视网膜神经节细胞含量。

Retinal Ganglion Cell Content Underlying Standard Automated Perimetry Size I to V Visual Sensitivities in the Non-Human Primate Experimental Glaucoma Model.

机构信息

University of Houston College of Optometry, Houston, Texas, United States.

出版信息

Invest Ophthalmol Vis Sci. 2024 Jul 1;65(8):22. doi: 10.1167/iovs.65.8.22.

Abstract

PURPOSE

To determine the relationship between visual sensitivities from white-on-white Goldmann size I to V stimuli and the underlying retinal ganglion cell (RGC) content in the non-human primate (NHP) experimental glaucoma model.

METHODS

Normative data were collected from 13 NHPs. Unilateral experimental glaucoma was induced in seven animals with the least variable fields who were monitored using optical coherence tomography and 30-2 full-threshold standard automated perimetry (SAP). At varying endpoints, animals were euthanized followed by perfusion fixation, and 1-mm retinal punches were obtained from 34 corresponding SAP locations. RGCs were immunolabeled with an antibody against an RNA-binding protein (RBPMS) marker and imaged using confocal microscopy. RGC counts from each location were then related to visual sensitivities for each stimulus size, after accounting for ocular magnification.

RESULTS

At the endpoint, the circumpapillary retinal nerve fiber layer thickness for experimental glaucoma eyes ranged from 47 to 113 µm. RGC density in control eyes was greatest for the 4.24° sample (18,024 ± 6869 cells/mm2) and decreased with eccentricity. Visual sensitivity at each tested location followed that predicted by spatial summation, with the critical area increasing with eccentricity (slope = 0.0036, R2 = 0.44). The relationship between RGC counts and visual sensitivity was described using a two-line fit, where the intercept of the first segment and hinge points were dependent on eccentricity.

CONCLUSIONS

In NHPs, SAP visual thresholds are related to the underlying RGCs. The resulting spatial summation based structure-function model can be used to estimate RGC content from any standard white-on-white stimulus size.

摘要

目的

确定非人类灵长类动物(NHP)实验性青光眼模型中,从白色金氏 I 至 V 大小的刺激的视敏度与视网膜神经节细胞(RGC)含量之间的关系。

方法

从 13 只 NHP 中收集了正常数据。对 7 只具有最可变视野的动物进行了单侧实验性青光眼诱导,使用光学相干断层扫描和 30-2 全阈值标准自动视野计(SAP)进行监测。在不同的终点,动物被安乐死,然后进行灌注固定,并从 34 个相应的 SAP 位置获得 1 毫米的视网膜穿孔。使用针对 RNA 结合蛋白(RBPMS)标志物的抗体对 RGC 进行免疫标记,并使用共聚焦显微镜进行成像。然后,在考虑到眼球放大率的情况下,将每个位置的 RGC 计数与每个刺激大小的视觉敏感度相关联。

结果

在终点时,实验性青光眼眼的环周视网膜神经纤维层厚度范围为 47 至 113µm。对照眼的 RGC 密度在 4.24°样本中最大(18024±6869 个细胞/mm2),并随偏心度而降低。每个测试位置的视觉敏感度遵循空间总和预测的结果,临界区域随偏心度增加而增加(斜率=0.0036,R2=0.44)。RGC 计数与视觉敏感度之间的关系用两段拟合来描述,其中第一段的截距和枢轴点取决于偏心度。

结论

在 NHP 中,SAP 视觉阈值与基础 RGC 相关。由此产生的基于空间总和的结构-功能模型可用于从任何标准的白色刺激大小估算 RGC 含量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1808/11246096/4ff25f5d68f4/iovs-65-8-22-f001.jpg

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