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青光眼性黄斑区的空间总和:与视网膜神经节细胞损伤的关系。

Spatial Summation in the Glaucomatous Macula: A Link With Retinal Ganglion Cell Damage.

机构信息

City, University of London, Optometry and Visual Sciences, London, United Kingdom.

NIHR Biomedical Research Centre, Moorfields Eye Hospital NHS Foundation Trust and UCL Institute of Ophthalmology, London, United Kingdom.

出版信息

Invest Ophthalmol Vis Sci. 2023 Nov 1;64(14):36. doi: 10.1167/iovs.64.14.36.

Abstract

PURPOSE

The purpose of this study was to test whether functional loss in the glaucomatous macula is characterized by an enlargement of Ricco's area (RA) through the application of a computational model linking retinal ganglion cell (RGC) damage to perimetric sensitivity.

METHODS

One eye from each of 29 visually healthy subjects <40 years old, 30 patients with glaucoma, and 20 age-similar controls was tested with a 10-2 grid with stimuli of 5 different area sizes. Structural estimates of point-wise RGC density were obtained from optical coherence tomography (OCT) scans. Structural and functional data from the young healthy cohort were used to estimate the parameters of a computational spatial summation model to generate a template. The template was fitted with a Bayesian hierarchical model to estimate the latent RGC density in patients with glaucoma and age-matched controls. We tested two alternative hypotheses: fitting the data by translating the template horizontally (H1: change in RA) or vertically (H2: loss of sensitivity without a change in RA). Root mean squared error (RMSE) of the model fits to perimetric sensitivity were compared. Ninety-five percent confidence intervals were bootstrapped. The dynamic range of the functional and structural RGC density estimates was denoted by their 1st and 99th percentiles.

RESULTS

The RMSE was 2.09 (95% CI = 1.92-2.26) under H1 and 2.49 (95% CI = 2.24-2.72) under H2 (P < 0.001). The average dynamic range for the structural RGC density estimates was only 11% that of the functional estimates.

CONCLUSIONS

Macular sensitivity loss in glaucoma is better described by a model in which RA changes with RGC loss. Structural measurements have limited dynamic range.

摘要

目的

本研究旨在通过应用一种将视网膜神经节细胞(RGC)损伤与视野敏感度联系起来的计算模型,检验青光眼性黄斑功能丧失是否表现为 Ricco 区域(RA)的扩大。

方法

对 29 名年龄均<40 岁的视力正常受试者、30 名青光眼患者和 20 名年龄匹配的对照者的每只眼分别进行 10-2 网格检查,刺激物大小为 5 种不同面积。通过光学相干断层扫描(OCT)扫描获得各点 RGC 密度的结构估计值。使用年轻健康队列的结构和功能数据来估计计算空间总和模型的参数,以生成模板。使用贝叶斯分层模型拟合模板,以估计青光眼患者和年龄匹配对照者的潜在 RGC 密度。我们测试了两种替代假设:通过水平平移模板(H1:RA 变化)或垂直平移模板(H2:RA 不变但敏感度降低)拟合数据。模型对视野敏感度的拟合均方根误差(RMSE)进行了比较。采用 bootstrap 方法计算 95%置信区间。功能和结构 RGC 密度估计值的动态范围由其第 1 和第 99 个百分位数表示。

结果

在 H1 下,RMSE 为 2.09(95%CI=1.92-2.26),在 H2 下为 2.49(95%CI=2.24-2.72)(P<0.001)。结构 RGC 密度估计值的平均动态范围仅为功能估计值的 11%。

结论

与 RA 随 RGC 损失而变化的模型相比,青光眼性黄斑敏感度损失描述得更好。结构测量的动态范围有限。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/797f/10683773/3f0ce48aec47/iovs-64-14-36-f001.jpg

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