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Corneal Biomechanical Assessment Using Corneal Visualization Scheimpflug Technology in Keratoconic and Normal Eyes

机译:使用角膜可视化Scheimpflug技术对角膜曲张眼和正常眼进行角膜生物力学评估

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摘要

Purpose. To compare the corneal biomechanical properties of keratoconic patients and age-matched controls using corneal visualization Scheimpflug technology (Corvis ST). Methods. Sixty keratoconic eyes from 47 keratoconus patients and 60 normal eyes from 60 controls were enrolled in this prospective study. Tomography and biomechanical parameters of all eyes were obtained with the Pentacam and Corvis ST, respectively. Intraocular pressure was measured using a Goldmann applanation tonometer. Results. The tomography and biomechanical parameters of the keratoconic corneas were significantly different from those of the normal corneas except for the anterior chamber angle, first applanation length, the highest concavity time, and peak distance. The deformation amplitude was the best predictive parameter (area under the curve: 0.882), with a sensitivity of 81.7%, although there was a significant overlap between keratoconic and normal corneas that ranged from 1.0 to 1.4 mm. In both the keratoconus and control groups, the deformation amplitude was negatively correlated with intraocular pressure, central corneal thickness, and corneal volume at 3 and 5 mm. Conclusions. Corvis ST offers an alternative method for measuring corneal biomechanical properties. The possibility of classifying keratoconus based on deformation amplitude deserves clinical attention.
机译:目的。为了比较圆锥角膜患者和年龄匹配的对照者的角膜生物力学特性,使用角膜可视化Scheimpflug技术(Corvis ST)。方法。这项前瞻性研究纳入了来自47个圆锥角膜患者的60个圆锥角膜眼和来自60个对照组的60个正常眼。使用Pentacam和Corvis ST分别获得所有眼睛的断层扫描和生物力学参数。使用Goldmann压平眼压计测量眼内压。结果。圆锥角膜的层析成像和生物力学参数与正常角膜的显着不同,除了前房角,第一压平长度,最大凹陷时间和最大距离。变形幅度是最好的预测参数(曲线下的面积:0.882),灵敏度为81.7%,尽管圆锥角膜和正常角膜之间存在明显的重叠,范围从1.0至1.4mm。在圆锥角膜组和对照组中,变形幅度与眼压,中央角膜厚度以及3和5?mm处的角膜体积呈负相关。结论。 Corvis ST提供了另一种测量角膜生物力学特性的方法。根据变形幅度对圆锥角膜进行分类的可能性值得临床重视。

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