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基于光学相干断层扫描(OCT)的圆锥角膜角膜内环植入术后定量角膜地形图分析

Quantitative OCT-based corneal topography in keratoconus with intracorneal ring segments.

作者信息

Ortiz Sergio, Pérez-Merino Pablo, Alejandre Nicolas, Gambra E, Jimenez-Alfaro I, Marcos Susana

出版信息

Biomed Opt Express. 2012 May 1;3(5):814-24. doi: 10.1364/BOE.3.000814. Epub 2012 Apr 2.

Abstract

Custom high-resolution high-speed anterior segment spectral domain Optical Coherence Tomography (OCT) was used to characterize three-dimensionally (3-D) corneal topography in keratoconus before and after implantation of intracorneal ring segments (ICRS). Previously described acquisition protocols were followed to minimize the impact of the motions of the eye. The collected set of images was corrected from distortions: fan (scanning) and optical (refraction). Custom algorithms were developed for automatic detection and classification of volumes in the anterior segment of the eye, in particular for the detection and classification of the implanted ICRS. Surfaces were automatically detected for quantitative analysis of the corneal elevation maps (fitted by biconicoids and Zernike polynomials) and pachymetry. Automatic tools were developed for the estimation of the 3-D positioning of the ICRS. The pupil center reference was estimated from the segmented iris volume. The developed algorithms are illustrated in a keratoconic eye (grade III) pre- and 30 days post-operatively after implantation of two triangular-section, 0.3-mm thick Ferrara ring segments. Quantitative corneal topographies reveal that the ICRS produced a flattening of the anterior surface, a steepening of the posterior surface, meridional differences in the changes in curvature and asphericity, and increased symmetry of the anterior topography. Optical distortion correction through the ICRS (of a different refractive index from the cornea) allowed accurate pachymetric estimates, which showed increased thickness in the ectatic area as well as in peripheral corneal areas. Automatic tools allowed estimation of the depth of the implanted ICRS ring, as well as its rotation with respect to the pupil plane. Anterior segment sOCT provided with fan and optical distortion correction and analysis tools is an excellent instrument for evaluating and monitoring keratoconic eyes and for the quantification of the changes produced by ICRS treatment.

摘要

采用定制的高分辨率高速眼前节谱域光学相干断层扫描(OCT)技术,对圆锥角膜患者植入角膜内环片(ICRS)前后的三维(3-D)角膜地形图进行表征。遵循先前描述的采集方案,以尽量减少眼球运动的影响。对采集到的图像集进行畸变校正:扇形(扫描)畸变和光学(折射)畸变。开发了定制算法,用于自动检测和分类眼前节的体积,特别是用于检测和分类植入的ICRS。自动检测表面,以对角膜高度图(用双二次曲面和泽尼克多项式拟合)和角膜厚度测量进行定量分析。开发了自动工具,用于估计ICRS的三维定位。根据分割后的虹膜体积估计瞳孔中心参考点。在植入两个三角形截面、0.3毫米厚的费拉拉环片的圆锥角膜眼(III级)术前和术后30天,展示了所开发的算法。定量角膜地形图显示,ICRS使前表面变平,后表面变陡,曲率和非球面度变化存在子午线差异,并且前表面地形图的对称性增加。通过ICRS(与角膜折射率不同)进行光学畸变校正,可实现准确的角膜厚度测量估计,结果显示扩张区域以及周边角膜区域的厚度增加。自动工具可估计植入的ICRS环的深度及其相对于瞳孔平面的旋转。配备扇形和光学畸变校正及分析工具的眼前节谱域OCT是评估和监测圆锥角膜眼以及量化ICRS治疗产生变化的优秀仪器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9e3/3342189/f8edb2ea6e1f/boe-3-5-814-g001.jpg

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