Institute of Vision Research, Department of Ophthalmology, Yonsei University College of Medicine, Seoul, Korea.
Invest Ophthalmol Vis Sci. 2010 Aug;51(8):4067-74. doi: 10.1167/iovs.09-4301. Epub 2010 Mar 17.
To verify the effect of the scan angle of the optic nerve head (ONH) on measurements of peripapillary retinal nerve fiber layer (RNFL) thickness by using spectral-domain optical coherence tomography (OCT).
Both eyes of 64 healthy volunteers were scanned by the optic disc cube 200 x 200 scan of a spectral-domain OCT system. Ultra-high resolution OCT images of the ONH were used to determine the horizontal, vertical, and three-dimensional scan angles of the ONH. The adjusted clock-hour RNFL thicknesses generated by the three-dimensional scan angle of the ONH were then compared with the original clock-hour RNFL thicknesses.
The mean horizontal, vertical, and three-dimensional scan angles of the ONH were 12.62 +/- 5.17 degrees, 4.17 +/- 3.30 degrees, and 13.62 +/- 5.13 degrees, respectively. In 125 (97.66%) eyes, the scanned ONH image was tilted temporally; in 89 (69.53%) eyes it was tilted inferiorly. The adjusted clock-hour RNFL thicknesses generated by the three-dimensional scan angle of the ONH were significantly different from the original values (P = 0.009); the mean difference was 13.26 +/- 14.95 microm, and the overall correlation and agreement were not excellent, especially in the inferior quadrant.
Current intraretinal imaging devices such as OCT assume that the ONH is positioned exactly in front of the scanning beam; however, this assumption appears to be inaccurate. Because the scan angle of the ONH varies and also influences RNFL thickness measurements, it may be better to consider using the ONH scan angle as an adjustment factor when peripapillary RNFL thicknesses are calculated by OCT.
利用频域光学相干断层扫描(OCT)验证视盘神经纤维层(RNFL)厚度的视神经头(ONH)扫描角度对测量结果的影响。
对 64 名健康志愿者的双眼进行频谱 OCT 系统的视神经盘立方 200×200 扫描。利用 ONH 的超高分辨率 OCT 图像确定 ONH 的水平、垂直和三维扫描角度。然后,将 ONH 三维扫描角度生成的调整后时钟小时 RNFL 厚度与原始时钟小时 RNFL 厚度进行比较。
ONH 的平均水平、垂直和三维扫描角度分别为 12.62±5.17 度、4.17±3.30 度和 13.62±5.13 度。在 125 只(97.66%)眼中,扫描的 ONH 图像颞侧倾斜;在 89 只(69.53%)眼中,它向下倾斜。由 ONH 三维扫描角度生成的调整后时钟小时 RNFL 厚度与原始值显著不同(P=0.009);平均差异为 13.26±14.95 微米,整体相关性和一致性均不佳,尤其是在下象限。
目前的视网膜内成像设备(如 OCT)假设 ONH 正好位于扫描光束的前面;然而,这种假设似乎并不准确。由于 ONH 的扫描角度会发生变化,并且也会影响 RNFL 厚度的测量,因此在通过 OCT 计算视盘周围 RNFL 厚度时,考虑将 ONH 扫描角度作为调整因素可能更好。