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Corneal changes in progressive keratoconus after cross-linking assessed by scheimpflug camera

机译:scheimpflug相机评估交联后进行性圆锥角膜的角膜变化

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摘要

PURPOSE: To evaluate corneal changes after corneal cross-linking (CXL) in progressive keratoconus with Scheimpflug imaging. METHODS: This prospective analysis included 40 eyes from 22 patients with progressive keratoconus. Corneal CXL was performed in 25 eyes (CXL group) and 15 fellow eyes served as controls (control group). Uncorrected (UDVA) and corrected distance visual acuity (CDVA), thinnest corneal thickness (ThCT), posterior elevation, and Holladay equivalent keratometry values (K1, K2) were determined with Pentacam (Oculus Optikger?te GmbH) before and 1 year after CXL. Area under the receiver operator characteristic (ROC) curve and multivariable general estimating equation models were used to determine the most sensitive parameters of corneal changes. RESULTS: Manifest sphere (-2.55±3.21 to -1.48±2.39 diopters [D], P=.02), UDVA (0.23±0.25 to 0.31±0.25, P<.001), and CDVA (0.58±0.28 to 0.72±0.19, P=.019) improved significantly in the CXL group. Significant decreases were found in ThCT (472.53±33.18 to 440.53±38.67 μm, P<.001), posterior elevation (68.33±28.69 to 22.67±16.21, P<.001), and keratometry values (K1 [45.06±4.55 to 43.51±4.67 D, P<.001], K2 [48.39±5.41 to 46.71±5.67 D, P<.001]) in the CXL group. These parameters remained stable in controls (P>.05). According to ROC analysis, posterior elevation change was the most characteristic parameter of corneal change after CXL (area under the curve=0.99). General estimating equation model showed that CXL (P=.001) and initial ThCT (P=.007) were significant predictors of decrease in posterior elevation with a significant negative interaction of initial ThCT on CXL effect (P=.005). CONCLUSIONS: Posterior elevation is a sensitive parameter to monitor corneal remodeling after CXL. Corneal CXL showed augmented effect on corneal protrusion in eyes with thinner corneas.
机译:目的:通过Scheimpflug成像评估渐进性圆锥角膜中角膜交联(CXL)后的角膜变化。方法:这项前瞻性分析包括来自22例进行性圆锥角膜的40只眼。角膜CXL手术25眼(CXL组),另15眼作为对照组(对照组)。在CXL之前和之后1年使用Pentacam(Oculus Optikger?te GmbH)确定未矫正(UDVA)和矫正远视力(CDVA),最薄角膜厚度(ThCT),后仰角以及Holladay等效角膜曲率法值(K1,K2)。 。接收器操作员特征(ROC)曲线下的面积和多变量通用估计方程模型用于确定角膜变化的最敏感参数。结果:清单球(-2.55±3.21至-1.48±2.39屈光度[D],P = .02),UDVA(0.23±0.25至0.31±0.25,P <.001)和CDVA(0.58±0.28至0.72± CXL组显着改善了0.19,P = .019)。发现ThCT(472.53±33.18至440.53±38.67μm,P <.001),后仰角(68.33±28.69至22.67±16.21,P <.001)和角膜测量值(K1 [45.06±4.55至43.51)显着降低CXL组中的±4.67 D,P <.001],K2 [48.39±5.41至46.71±5.67 D,P <.001])。这些参数在对照组中保持稳定(P> 0.05)。根据ROC分析,后仰角改变是CXL后角膜改变的最典型参数(曲线下面积= 0.99)。一般估计方程模型表明,CXL(P = .001)和初始ThCT(P = .007)是后抬高下降的重要预测指标,而初始ThCT对CXL效应具有显着的负向相互作用(P = .005)。结论:后仰角是监测CXL后角膜重塑的敏感参数。角膜CXL对角膜较薄的眼睛的角膜突出效果增强。

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