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Repeatability and reproducibility of corneal thickness using SOCT Copernicus HR

机译:使用SOCT Copernicus HR角膜厚度的可重复性和可再现性

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摘要

Purpose: The aim of this study is to determine the reliability of corneal thickness measurements derived from SOCT Copernicus HR (Fourier domain OCT). Methods: Thirty healthy eyes of 30 subjects were evaluated. One eye of each patient was chosen randomly. Images were obtained of the central (up to 2.0 mm from the corneal apex) and paracentral (2.0 to 4.0 mm) cornea. We assessed corneal thickness (central and paracentral) and epithelium thickness. The intra-observer repeatability data were analysed using the intra-class correlation coefficient (ICC) for a range of 95 per cent within-subject standard deviation (SW) and the within-subject coefficient of variation (CW). The level of agreement by Bland–Altman analysis was also represented for the study of the reproducibility between observers and agreement between methods of measurement (automatic versus manual). Results: The mean value of the central corneal thickness (CCT) was 542.4 ± 30.1 μm (SD). There was a high intra-observer agreement, finding the best result in the central sector with an intra-class correlation coefficient of 0.99, 95 per cent CI (0.989 to 0.997) and the worst, in the minimum corneal thickness, with an intra-class correlation coefficient of 0.672, 95 per cent CI (0.417 to 0.829). Reproducibility between observers was very high. The best result was found in the central sector thickness obtained both manually and automatically with an intra-class correlation coefficient of 0.990 in both cases and the worst result in the maximum corneal thickness with an intra-class correlation coefficient of 0.827. The agreement between measurement methods was also very high with intra-class correlation coefficient greater than 0.91. On the other hand the repeatability and reproducibility for epithelial measurements was poor. Conclusion: Pachymetric mapping with SOCT Copernicus HR was found to be highly repeatable and reproducible. We found that the device lacks an appropriate ergonomic design as proper focusing of the laser beam onto the cornea for anterior segment scanning required that patients were positioned slightly farther away from the machine head-rest than in the setup for retinal imaging.
机译:目的:本研究的目的是确定从SOCT哥白尼HR(傅里叶域OCT)得出的角膜厚度测量结果的可靠性。方法:对30名受试者的30只健康眼睛进行了评估。每位患者随机选择一只眼睛。获得中央角膜(距角膜顶点最大2.0 mm)和中央角膜(2.0至4.0mm)的图像。我们评估了角膜厚度(中央和中央附近)和上皮厚度。使用组内相关系数(ICC)分析了95%的受试者内部标准偏差(SW)和受试者内部变异系数(CW)的观察者内部重复性数据。通过Bland–Altman分析得出的一致性水平也代表了观察者之间可重复性的研究以及测量方法之间的一致性(自动与手动)。结果:中央角膜厚度(CCT)的平均值为542.4±30.1μm(SD)。观察者内部的协议很高,在中心部门发现最佳结果,其组内相关系数为0.99,CI为95%(0.989至0.997),而在最小角膜厚度方面,最差结果为类别相关系数为0.672,CI为95%(0.417至0.829)。观察者之间的可重复性很高。在两种情况下,手动和自动获得的中心扇体厚度均获得最佳结果,组内相关系数为0.990,最差结果为最大角膜厚度,组内相关系数为0.827。测量方法之间的一致性也很高,组内相关系数大于0.91。另一方面,上皮测量的可重复性和再现性很差。结论:使用SOCT Copernicus HR进行测厚图可高度重复和可重复。我们发现该设备缺乏适当的人体工程学设计,因为将激光束正确聚焦在角膜上以进行前段扫描时,需要将患者放置在距机器头枕稍远的位置,而不是在视网膜成像中。

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