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Quantitative analysis of anterior segment optical coherence tomography images: the Zhongshan Angle Assessment Program.

机译:前段光学相干断层扫描图像的定量分析:中山角评估计划。

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AIM: To describe a new image analysis method and software for anterior chamber images obtained by the anterior-segment optical coherence tomography (AS-OCT) and to assess its intraobserver and interobserver measurement reproducibility. METHODS: Twenty 8-bit greyscale 600x300 AS-OCT images with apparent wide angles and 20 images with apparent narrow angles were consecutively selected from a database. Two glaucoma fellowship-trained ophthalmologists used proprietary image analysis software to analyse the images twice. Algorithms defined the borders and curvatures of anterior chamber (AC) structures and measured AC parameters using scleral spur location as the only observer input. The intraobserver and interobserver reproducibility of scleral spur location and angle parameters was calculated in terms of limits of agreement (LOA; mean of differences+/-1.96 SD of differences) and coefficient of variation (CV; SD of differences/overall mean). RESULTS: The analysis software successfully measured all parameters in all images. When the same image was assessed twice by the same grader, the mean differences ranged from 0 to 0.010 mm in linear measurements and 0.001 to 0.006 mm2 in angle area measurements. LOA tended to be greater in the wider angles. The upper and lower limit values of LOAs were approximately 1/5 to 1/4 of the overall mean. Measurements between two graders had a higher variance. Reproducibility in terms of CV was better in wide angles when compared with narrow angles. The reproducibility of scleral spur placement between observers was poorer in narrow angles (p = 0.001). About 50% of the interobserver variance in angle-area measurements was attributable to the variance of scleral spur placement, while this proportion was only 10-20% in linear measurements. CONCLUSIONS: Determination of angle parameters using semiautomated software leads to variability in measurement. Variability increases when more than one observer identifies the scleral spur. Variability differs in narrow and open angles, and so including both types is essential when evaluating angle-assessment software. A fully automated analysis and higher image resolution would likely improve quantification of Visante AS-OCT images.
机译:目的:描述一种新的图像分析方法和软件,用于通过前段光学相干断层扫描(AS-OCT)获得的前房图像,并评估其观察者内和观察者间测量的可重复性。方法:从数据库中连续选择20个具有明显广角的8位灰度600x300 AS-OCT图像和20个具有明显窄角的图像。两名接受青光眼研究金培训的眼科医生使用专有的图像分析软件对图像进行了两次分析。算法使用巩膜骨刺位置作为唯一的观察者输入来定义前房(AC)结构的边界和曲率,并测量AC参数。根据一致性极限(LOA;差异均值+/- 1.96 SD差异)和变异系数(CV;差异SD /总体均值)计算巩膜骨刺位置和角度参数的观察者内和观察者间再现性。结果:分析软件成功测量了所有图像中的所有参数。当由同一分级机对同一幅图像进行两次评估时,线性测量的平均差为0至0.010 mm2,角度面积测量的平均差为0.001至0.006 mm2。 LOA在更广的角度上倾向于更大。 LOA的上下限值约为整体平均值的1/5至1/4。两位评分者之间的测量差异较大。与窄角相比,广角的CV重现性更好。观察者之间巩膜骨刺放置的再现性在窄角度下较差(p = 0.001)。角度区域测量中观察者间差异的约50%归因于巩膜骨刺放置的差异,而在线性测量中,这一比例仅为10-20%。结论:使用半自动化软件确定角度参数会导致测量的可变性。当多个观察者识别出巩膜刺时,变异性增加。可变角度在窄角度和开角度中均不同,因此在评估角度评估软件时,必须同时包括这两种类型。全自动分析和更高的图像分辨率可能会改善Visante AS-OCT图像的量化。

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