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使用扫频光学相干断层扫描技术的广角视网膜神经纤维层图谱对视野缺损前和早期视野缺损性青光眼的诊断能力

Diagnostic Ability of Wide-field Retinal Nerve Fiber Layer Maps Using Swept-Source Optical Coherence Tomography for Detection of Preperimetric and Early Perimetric Glaucoma.

作者信息

Lee Won June, Na Kyeong Ik, Kim Young Kook, Jeoung Jin Wook, Park Ki Ho

机构信息

*Department of Ophthalmology, Seoul National University College of Medicine †Department of Ophthalmology, Seoul National University Hospital, Seoul, Korea.

出版信息

J Glaucoma. 2017 Jun;26(6):577-585. doi: 10.1097/IJG.0000000000000662.

Abstract

PURPOSE

To evaluate the diagnostic ability of wide-field retinal nerve fiber layer (RNFL) maps with swept-source optical coherence tomography (SS-OCT) for detection of preperimetric (PPG) and early perimetric glaucoma (EG).

METHODS

One hundred eighty-four eyes, including 67 healthy eyes, 43 eyes with PPG, and 74 eyes with EG, were analyzed. Patients underwent a comprehensive ocular examination including red-free RNFL photography, visual field testing and wide-field SS-OCT scanning (DRI-OCT-1 Atlantis; Topcon, Tokyo, Japan). SS-OCT provides a wide-field RNFL thickness map and a SuperPixel map, which are composed of the RNFL deviation map of the peripapillary area and the deviation map of the composition of the ganglion cell layer with the inner plexiform layer and RNFL (GC-IPL+RNFL) in the macular area. The ability to discriminate PPG and EG from healthy eyes was assessed using sensitivity, specificity, and area under the receiver operating characteristic curve (AUC) for all parameters and criteria provided by the wide-field SS-OCT scan.

RESULTS

The wide-field RNFL thickness map using SS-OCT showed the highest sensitivity of PPG-diagnostic and EG-diagnostic performance compared with the other SS-OCT criteria based on the internal normative base (93.0 and 97.3%, respectively). Among the SS-OCT continuous parameters, the RFNL thickness of the 7 clock-hour, inferior and inferotemporal macular ganglion cell analyses showed the largest AUC of PPG-diagnostic and EG-diagnostic performance (AUC=0.809 to 0.865).

CONCLUSIONS

The wide-field RNFL thickness map using SS-OCT performed well in distinguishing eyes with PPG and EG from healthy eyes. In the clinical setting, wide-field RNFL maps of SS-OCT can be useful tools for detection of early-stage glaucoma.

摘要

目的

评估扫频源光学相干断层扫描(SS-OCT)宽视野视网膜神经纤维层(RNFL)图谱检测阈前青光眼(PPG)和早期视野缺损性青光眼(EG)的诊断能力。

方法

对184只眼睛进行分析,其中包括67只健康眼睛、43只PPG眼睛和74只EG眼睛。患者接受了全面的眼部检查,包括无赤光RNFL摄影、视野测试和宽视野SS-OCT扫描(DRI-OCT-1 Atlantis;日本东京拓普康公司)。SS-OCT提供宽视野RNFL厚度图和超像素图,它们由视乳头周围区域的RNFL偏差图以及黄斑区神经节细胞层与内丛状层和RNFL(GC-IPL+RNFL)的组成偏差图组成。使用宽视野SS-OCT扫描提供的所有参数和标准的敏感性、特异性和受试者操作特征曲线下面积(AUC)来评估区分PPG和EG与健康眼睛的能力。

结果

与基于内部规范基线的其他SS-OCT标准相比,使用SS-OCT的宽视野RNFL厚度图显示出PPG诊断和EG诊断性能的最高敏感性(分别为93.0%和97.3%)。在SS-OCT连续参数中,7点钟方位、下方和颞下黄斑神经节细胞分析的RNFL厚度显示出PPG诊断和EG诊断性能的最大AUC(AUC=0.809至0.865)。

结论

使用SS-OCT的宽视野RNFL厚度图在区分PPG和EG与健康眼睛方面表现良好。在临床环境中,SS-OCT的宽视野RNFL图谱可作为检测早期青光眼的有用工具。

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