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基于光谱光学相干断层扫描(sOCT)的角膜地形图

Corneal topography from spectral optical coherence tomography (sOCT).

作者信息

Ortiz Sergio, Siedlecki Damian, Pérez-Merino Pablo, Chia Noelia, de Castro Alberto, Szkulmowski Maciej, Wojtkowski Maciej, Marcos Susana

出版信息

Biomed Opt Express. 2011 Dec 1;2(12):3232-47. doi: 10.1364/BOE.2.003232. Epub 2011 Nov 4.

Abstract

We present a method to obtain accurate corneal topography from a spectral optical coherence tomography (sOCT) system. The method includes calibration of the device, compensation of the fan (or field) distortion introduced by the scanning architecture, and image processing analysis for volumetric data extraction, segmentation and fitting. We present examples of three-dimensional (3-D) surface topography measurements on spherical and aspheric lenses, as well as on 10 human corneas in vivo. Results of sOCT surface topography (with and without fan-distortion correction) were compared with non-contact profilometry (taken as reference) on a spherical lens, and with non-contact profilometry and state-of-the art commercial corneal topography instruments on aspheric lenses and on subjects. Corneal elevation maps from all instruments were fitted by quadric surfaces (as well as by tenth-order Zernike polynomials) using custom routines. We found that the discrepancy in the estimated radius of curvature from nominal values in artificial corneas decreased from 4.6% (without fan distortion correction) to 1.6% (after fan distortion correction), and the difference in the asphericity decreased from 130% to 5%. In human corneas, the estimated corneal radius of curvature was not statistically significantly different across instruments. However, a Bland-Altman analysis showed consistent differences in the estimated asphericity and corneal shape between sOCT topographies without fan distortion correction and the rest of the measurements.

摘要

我们提出了一种从光谱光学相干断层扫描(sOCT)系统获取精确角膜地形图的方法。该方法包括设备校准、补偿扫描架构引入的扇形(或视场)畸变,以及用于体数据提取、分割和拟合的图像处理分析。我们展示了在球面和非球面透镜以及10例人眼角膜活体上进行三维(3-D)表面地形图测量的示例。将sOCT表面地形图(有和没有扇形畸变校正)的结果与在球面上的非接触轮廓测量法(作为参考)进行比较,并与在非球面透镜和受试者上的非接触轮廓测量法以及最先进的商业角膜地形图仪器进行比较。使用定制程序通过二次曲面(以及十阶泽尼克多项式)对所有仪器的角膜高度图进行拟合。我们发现,人工角膜中估计的曲率半径与标称值之间的差异从4.6%(无扇形畸变校正)降至1.6%(扇形畸变校正后),非球面性差异从130%降至5%。在人眼角膜中,各仪器估计的角膜曲率半径在统计学上无显著差异。然而,布兰德-奥特曼分析表明,未进行扇形畸变校正的sOCT地形图与其他测量方法在估计的非球面性和角膜形状方面存在一致差异。

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