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伴有轴突细胞骨架高血压性损伤的视网膜神经纤维层的反射光谱和双折射

Reflectance Spectrum and Birefringence of the Retinal Nerve Fiber Layer With Hypertensive Damage of Axonal Cytoskeleton.

作者信息

Huang Xiang-Run, Knighton Robert W, Spector Ye Z, Qiao Jianzhong, Kong Wei, Zhao Qi

机构信息

Bascom Palmer Eye Institute, University of Miami Miller School of Medicine, Miami, Florida, United States.

出版信息

Invest Ophthalmol Vis Sci. 2017 Apr 1;58(4):2118-2129. doi: 10.1167/iovs.16-20553.

Abstract

PURPOSE

Glaucoma damages the retinal nerve fiber layer (RNFL). This study used precise multimodal image registration to investigate the changes of the RNFL reflectance spectrum and birefringence in nerve fiber bundles with different degrees of axonal damage.

METHODS

The reflectance spectrum of individual nerve fiber bundles in normal rats and rats with experimental glaucoma was measured from 400 to 830 nm and their birefringence was measured at 500 nm. Optical measurements of the same bundles were made at different distances from the optic nerve head (ONH). After the optical measurements, the axonal cytoskeleton of the RNFL was evaluated by confocal microscopy to assess the severity of cytoskeletal change.

RESULTS

For normal bundles, the shape of the RNFL reflectance spectrum and the value of RNFL birefringence did not change along bundles. In treated retinas, damage to the cytoskeleton varied within and across retinas. The damage in retinal sectors was subjectively graded from normal-looking to severe. Change of spectral shape occurred near the ONH in all sectors studied. This change became more prominent and occurred farther from the ONH with increased damage severity. In contrast, RNFL birefringence did not show change in normal-looking sectors, but decreased in sectors with mild and moderate damage. The birefringence of severely damaged sectors was either within or below the normal range.

CONCLUSIONS

Varying degrees of cytoskeletal damage affect the RNFL reflectance spectrum and birefringence differently, supporting differences in the ultrastructural basis for the two optical properties. Both properties, however, may provide a means to detect disease and to estimate ultrastructural damage of the RNFL in glaucoma.

摘要

目的

青光眼会损害视网膜神经纤维层(RNFL)。本研究采用精确的多模态图像配准技术,来研究不同程度轴突损伤的神经纤维束中RNFL反射光谱和双折射的变化。

方法

测量正常大鼠和实验性青光眼大鼠单个神经纤维束在400至830纳米范围内的反射光谱,并在500纳米处测量其双折射。在距视神经乳头(ONH)不同距离处对同一神经纤维束进行光学测量。光学测量后,通过共聚焦显微镜评估RNFL的轴突细胞骨架,以评估细胞骨架变化的严重程度。

结果

对于正常神经纤维束,RNFL反射光谱的形状和RNFL双折射值沿神经纤维束没有变化。在治疗后的视网膜中,细胞骨架的损伤在视网膜内和视网膜间各不相同。视网膜各区域的损伤主观上从外观正常到严重进行分级。在所研究的所有区域中,光谱形状的变化都发生在ONH附近。随着损伤严重程度的增加,这种变化变得更加明显,并且发生在离ONH更远的地方。相比之下,RNFL双折射在外观正常的区域没有变化,但在轻度和中度损伤的区域有所下降。严重受损区域的双折射要么在正常范围内,要么低于正常范围。

结论

不同程度的细胞骨架损伤对RNFL反射光谱和双折射的影响不同,这支持了这两种光学特性在超微结构基础上的差异。然而,这两种特性都可能提供一种检测疾病和估计青光眼患者RNFL超微结构损伤的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7f9/5386346/23abdfb4425f/i1552-5783-58-4-2118-f01.jpg

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