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青光眼视网膜神经纤维层反射率的波长依赖性变化。

Wavelength-dependent change of retinal nerve fiber layer reflectance in glaucomatous retinas.

机构信息

Bascom Palmer Eye Institute, University of Miami Miller School of Medicine, Miami, FL 33136, USA.

出版信息

Invest Ophthalmol Vis Sci. 2012 Aug 24;53(9):5869-76. doi: 10.1167/iovs.12-10001.

Abstract

PURPOSE

Retinal nerve fiber layer (RNFL) reflectance is often used in optical methods for RNFL assessment in clinical diagnosis of glaucoma, yet little is known about the reflectance property of the RNFL under the development of glaucoma. This study measured the changes in RNFL reflectance spectra that occurred in retinal nerve fiber bundles with different degrees of glaucomatous damage.

METHODS

A rat model of glaucoma with laser photocoagulation of trabecular meshwork was used. Reflectance of the RNFL in an isolated retina was measured at wavelengths of 400-830 nm. Cytostructural distribution of the bundles measured optically was evaluated by confocal imaging of immunohistochemistry staining of cytoskeletal components, F-actin, microtubules, and neurofilaments. RNFL reflectance spectra were studied in bundles with normal-looking appearance, early F-actin distortion, and apparent damage of all cytoskeletal components. Changes of RNFL reflectance spectra were studied at different radii (0.22, 0.33, and 0.44 mm) from the optic nerve head (ONH).

RESULTS

Bundles in 30 control retinas and 41 glaucomatous retinas were examined. In normal retinas, reflectance spectra were similar along the same bundles. In glaucomatous retinas, reflectance spectra changed along bundles with the spectra becoming flatter as bundle areas approached the ONH.

CONCLUSIONS

Elevation of intraocular pressure (IOP) causes nonuniform changes in RNFL reflectance across wavelengths. Changes of reflectance spectra occur early in bundles near the ONH and prior to apparent cytoskeletal distortion. Using the ratio of RNFL reflectance measured at different wavelengths can provide early and sensitive detection of glaucomatous damage.

摘要

目的

视网膜神经纤维层(RNFL)的反射率通常用于光学方法来评估 RNFL,以辅助临床诊断青光眼,但对于青光眼发展过程中 RNFL 的反射率特性知之甚少。本研究测量了具有不同程度青光眼损伤的视网膜神经纤维束的 RNFL 反射率光谱的变化。

方法

使用激光光凝小梁网建立大鼠青光眼模型。在 400-830nm 的波长下测量离体视网膜中 RNFL 的反射率。通过对细胞骨架成分、F-肌动蛋白、微管和神经丝的免疫组织化学染色的共聚焦成像,评估光学测量的纤维束的细胞结构分布。研究了外观正常、早期 F-肌动蛋白扭曲和所有细胞骨架成分明显损伤的纤维束的 RNFL 反射率光谱。在距视神经头(ONH)不同半径(0.22、0.33 和 0.44mm)处研究了 RNFL 反射率光谱的变化。

结果

共检查了 30 只正常对照视网膜和 41 只青光眼视网膜的纤维束。在正常视网膜中,同一纤维束上的反射率光谱相似。在青光眼视网膜中,反射率光谱沿纤维束发生变化,随着纤维束区域接近 ONH,光谱变得更加平坦。

结论

眼内压(IOP)升高会导致 RNFL 反射率在整个波长范围内不均匀变化。在视神经头附近的纤维束中,在明显的细胞骨架扭曲之前,就会发生反射率光谱的变化。使用在不同波长测量的 RNFL 反射率比值,可以提供对青光眼损伤的早期和敏感检测。

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