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频域光学相干断层扫描测量视神经头和视网膜神经纤维层参数的精确性。

Precision of Optic Nerve Head and Retinal Nerve Fiber Layer Parameter Measurements by Spectral-domain Optical Coherence Tomography.

机构信息

Department of Ophthalmology, University of Erlangen-Nuremberg, Erlangen, Germany.

出版信息

J Glaucoma. 2018 May;27(5):407-414. doi: 10.1097/IJG.0000000000000875.

Abstract

PURPOSE

The aim of this study was to assess the repeatability and reproducibility (R&R) of Bruch membrane opening based on minimum rim width (BMO-MRW), minimum rim area (BMO-MRA) and peripapillary retinal nerve fiber layer thickness (RNFLT) with the Spectralis optical coherence tomography (Heidelberg Engineering) for normal and glaucoma subjects. Precise measurement of these parameters can support detection of structural glaucomatous damage and progression.

METHODS

This cross-sectional study included 16 healthy controls and 16 patients with glaucoma. One eye was randomly selected and included in this study. Subjects underwent 1 baseline and 3 follow-up measurements, using 3 different Spectralis optical coherence tomography devices in randomized order, each operated by a single operator. Outcome measures were global and sectorial averages of BMO-MRW and BMO-MRA, and of peripapillary RNFLT obtained from 12/14/16-degree circle scans. Coefficients of variation (COV) were calculated and a mixed-effects analysis of variance was performed to compare R&R between devices.

RESULTS

COVs of global and sectorial BMO-MRW measurement under repeatability conditions ranged from 0.51% to 1.7% (normal, 0.62% to 1.3%; glaucoma, 0.64% to 2.3%). Respective COVs under reproducibility conditions ranged from 0.89% to 1.9% (normal, 0.77% to 2.8%; glaucoma, 1.1% to 2.6%). COVs of global and sectorial RNFLT measurements under repeatability conditions ranged from 0.5% to 2.8%. Respective COVs under reproducibility conditions ranged from 1.6% to 3.5%.

CONCLUSIONS

For R&R, the COVs of measured parameters were by trend higher for glaucoma eyes compared with normal controls. The BMO-MRW measurement system has an excellent precision taking into account that major and minor corrections of segmentation have to be done by the examiner before evaluation.

摘要

目的

本研究旨在评估基于最小边缘宽度(BMO-MRW)、最小边缘面积(BMO-MRA)和视盘周围视网膜神经纤维层厚度(RNFLT)的Bruch 膜开口重复性和可再现性(R&R),采用 Spectralis 光学相干断层扫描仪(海德堡工程)对正常人和青光眼患者进行检测。这些参数的精确测量可以支持对结构型青光眼损伤和进展的检测。

方法

本横断面研究纳入 16 名健康对照者和 16 名青光眼患者。每只眼随机选择并纳入本研究。受检者接受了 1 次基线和 3 次随访测量,使用 3 种不同的 Spectralis 光学相干断层扫描仪,以随机顺序进行,每种仪器均由一名操作人员操作。测量指标为 12/14/16 度环扫描获得的 BMO-MRW 和 BMO-MRA 的全局和扇形平均值以及视盘周围 RNFLT 的平均值。计算变异系数(COV),并采用混合效应方差分析比较不同仪器间的 R&R。

结果

在重复性条件下,全局和扇形 BMO-MRW 测量的 COV 范围为 0.51%至 1.7%(正常组为 0.62%至 1.3%;青光眼组为 0.64%至 2.3%)。在再现性条件下,相应的 COV 范围为 0.89%至 1.9%(正常组为 0.77%至 2.8%;青光眼组为 1.1%至 2.6%)。在重复性条件下,全局和扇形 RNFLT 测量的 COV 范围为 0.5%至 2.8%。在再现性条件下,相应的 COV 范围为 1.6%至 3.5%。

结论

对于 R&R,与正常对照组相比,青光眼眼的测量参数 COV 呈升高趋势。考虑到在评估前需要检查者进行主要和次要的分割校正,BMO-MRW 测量系统具有良好的精度。

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