Suppr超能文献

偏振测量视网膜神经纤维层厚度在青光眼诊断中的应用

Polarimetric measurement of retinal nerve fiber layer thickness in glaucoma diagnosis.

作者信息

Horn F K, Jonas J B, Martus P, Mardin C Y, Budde W M

机构信息

Department of Ophthalmology and University Eye Hospital, Friedrich-Alexander University Erlangen-Nürnberg at Erlangen, Germany.

出版信息

J Glaucoma. 1999 Dec;8(6):353-62.

Abstract

PURPOSE

To evaluate reliability and diagnostic value of polarimetric measurements of the retinal nerve fiber layer (RNFL) thickness in the diagnosis of glaucoma.

METHODS

The study included 81 eyes with perimetric glaucoma with glaucomatous changes of the optic disc and visual field defects; 52 eyes with preperimetric glaucoma with glaucomatous optic disc abnormalities and normal achromatic visual fields; and 70 normal eyes. For determination of reliability, four examiners repeated polarimetric measurements five times in ten normal subjects.

RESULTS

The polarimetric variables were significantly correlated with increasing mean visual field defect and decreasing neuroretinal rim area. In correlation analyses with visual field defects, correlation coefficients were highest for the variable "superior/nasal ratio" and "the Number," a variable calculated by the neural network of the device. In correlations with neuroretinal rim area, correlation coefficients were highest for measurements of the inferior nerve fiber layer thickness. The preperimetric glaucoma group and the control group differed significantly in the variables "superior/nasal ratio" and "the Number" and, to a smaller degree, in the variables "superior/temporal ratio" and "superior/inferior ratio." The Number variable had a sensitivity of 82% and 58% at a predefined specificity of 80% in separating perimetric glaucoma patients and preperimetric glaucoma patients, respectively, from control subjects. Reproducibility of the polarimetric measurements ranged between 70% and 89%.

CONCLUSION

Polarimetric measurements of the RNFL thickness can detect glaucomatous optic nerve damage in patients with visual field loss, and in some patients with preperimetric glaucomatous optic nerve damage. Considering the fast performance, easy handling, and low maintenance costs, RNFL polarimetry may be helpful in glaucoma diagnosis.

摘要

目的

评估视网膜神经纤维层(RNFL)厚度的偏振测量在青光眼诊断中的可靠性和诊断价值。

方法

该研究纳入了81只患有视野性青光眼且伴有视盘青光眼性改变和视野缺损的眼睛;52只患有视野前期青光眼且伴有青光眼性视盘异常和正常无色视野的眼睛;以及70只正常眼睛。为了确定可靠性,四名检查者在十名正常受试者中对偏振测量进行了五次重复。

结果

偏振变量与平均视野缺损增加和神经视网膜边缘面积减小显著相关。在与视野缺损进行相关性分析时,变量 “上/鼻侧比值” 和 “数量”(该设备神经网络计算得出的一个变量)的相关系数最高。在与神经视网膜边缘面积的相关性分析中,下神经纤维层厚度测量的相关系数最高。视野前期青光眼组和对照组在变量 “上/鼻侧比值” 和 “数量” 上存在显著差异,在较小程度上,在变量 “上/颞侧比值” 和 “上/下比值” 上也存在差异。在将视野性青光眼患者和视野前期青光眼患者与对照组区分开来时,预定义特异性为80%时,数量变量的敏感性分别为82%和58%。偏振测量的可重复性在70%至89%之间。

结论

RNFL厚度的偏振测量可以检测出视野丧失患者以及一些视野前期青光眼性视神经损伤患者的青光眼性视神经损伤。考虑到其操作快速、易于操作且维护成本低,RNFL偏振测量可能有助于青光眼的诊断。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验