Department of Ophthalmology, Seoul National University College of Medicine, Seoul, Korea.
Invest Ophthalmol Vis Sci. 2012 Jan 20;53(1):198-204. doi: 10.1167/iovs.11-7848.
To introduce a novel, digital, three-dimensional (3D) reconstruction of the optic nerve head (ONH) and to use this method to evaluate the 3D configuration of the lamina cribrosa (LC) in patients with primary open-angle glaucoma.
Optic discs of 137 eyes of 137 patients with open-angle glaucoma were scanned with enhanced depth-imaging spectral domain-optical coherence tomography (SD-OCT). 3D images of the ONH were then reconstructed from B-scan images using maximum intensity projection (MIP) and texture-based volume rendering (VRT). The performance of the threshold segmentation by MIP and VRT was assessed by comparing the distance of the anterior LC surface from the reference line set at the Bruch's membrane opening level (LC depth) measured within both of the 3D images and the B-scan images.
The LC configuration could be evaluated three dimensionally in ∼95% of patients scanned with enhanced depth-imaging SD-OCT. The mean LC depth was 559.50 ± 151.98, 558.97 ± 152.39, and 560.22 ± 152.26 μm in B-scan, MIP, and VRT images, respectively. There were excellent agreements between the values (intraclass correlation coefficient = 1.000 between MIP and B-scan, and 0.999 between VRT and B-scan). The configuration of the LC varied considerably among individual glaucoma patients.
This method provides measurable 3D images of the LC that enable comprehensive evaluation of the LC configuration. This technique should facilitate the investigation of the LC in glaucomatous eyes.
介绍一种新颖的视神经头(ONH)数字三维(3D)重建方法,并使用该方法评估原发性开角型青光眼患者的筛板(LC)的 3D 形态。
使用增强深度成像谱域光学相干断层扫描(SD-OCT)对 137 例开角型青光眼患者的 137 只眼的视盘进行扫描。然后使用最大强度投影(MIP)和基于纹理的体绘制(VRT)从 B 扫描图像重建 ONH 的 3D 图像。通过比较在 3D 图像和 B 扫描图像内测量的位于 Bruch 膜开口水平(LC 深度)参考线设定的前 LC 表面的距离,评估 MIP 和 VRT 的阈值分割的性能。
在接受增强深度成像 SD-OCT 扫描的约 95%的患者中,可以对 LC 形态进行三维评估。B 扫描、MIP 和 VRT 图像中 LC 深度的平均值分别为 559.50±151.98μm、558.97±152.39μm 和 560.22±152.26μm。MIP 与 B 扫描之间(组内相关系数=1.000)和 VRT 与 B 扫描之间(组内相关系数=0.999)的数值之间存在极好的一致性。个体青光眼患者的 LC 形态差异很大。
该方法提供了可测量的 LC 的 3D 图像,能够全面评估 LC 形态。该技术应有助于对青光眼眼的 LC 进行研究。