Eye Clinic, Department of Clinical Science Luigi Sacco, Sacco Hospital, University of Milan, Italy.
Retina. 2012 May;32(5):1007-12. doi: 10.1097/IAE.0b013e31822f5660.
To evaluate repeatability (test-retest) and reproducibility of retinal thickness measurements using spectral-domain optical coherence tomography with different densities of A-scans per B-scan and different frames per B-scan for real-time averaging.
Twelve healthy subjects were analyzed by spectral-domain optical coherence tomography. Raster lines analysis with 19 B-scans over the examined area centered on the macula was performed. Images were acquired both in standard-density (768 A-scans/B-scan) and high-density (1,536 A-scans/B-scan) modalities. Moreover, images were acquired using 2 and 20 frames/B-scan for real-time averaging. Each analysis was repeated twice to test for repeatability.
Intersession repeatability was good for all studied analysis protocols, with Lin concordance correlation coefficient values ranging between 0.88 and 1.00. Reproducibility assessment showed consistent retinal thickness measurements using variable scan density, with Bland-Altman limits of agreement of -6 μm to 6 μm in the central area. Reproducibility assessment showed consistent retinal thickness measurements using different number of frames used in the real-time averaging process, with Bland-Altman limits of agreement of -8 μm to 4 μm in the central area.
Spectral-domain optical coherence tomography is a very reliable tool for central retinal thickness assessment. Changes in the number of A-scans/B-scan and in frames used for real-time averaging do not affect repeatability and reproducibility.
评估使用不同密度的 A 扫描/ B 扫描和不同帧数/ B 扫描的实时平均光谱域光相干断层扫描对视网膜厚度测量的重复性(测试-再测试)和再现性。
对 12 名健康受试者进行了光谱域光相干断层扫描分析。对以黄斑为中心的检查区域进行了 19 个 B 扫描的光栅线分析。在标准密度(768 个 A 扫描/ B 扫描)和高密 度(1536 个 A 扫描/ B 扫描)模式下采集图像。此外,使用 2 个和 20 个帧/ B 扫描进行实时平均。每次分析重复两次以测试重复性。
所有研究的分析方案的组间重复性均良好,Lin 一致性相关系数值在 0.88 到 1.00 之间。重现性评估表明,使用不同的扫描密度可以获得一致的视网膜厚度测量值,中心区域的 Bland-Altman 一致性界限为-6 μm 至 6 μm。使用实时平均过程中不同数量的帧数进行重现性评估表明,中心区域的 Bland-Altman 一致性界限为-8 μm 至 4 μm。
光谱域光相干断层扫描是评估中心视网膜厚度的非常可靠的工具。A 扫描/ B 扫描的数量和实时平均使用的帧数的变化不会影响重复性和再现性。