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首页> 外文期刊>Cornea >Quantitative descriptors of corneal topography that influence soft toric contact lens fitting.
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Quantitative descriptors of corneal topography that influence soft toric contact lens fitting.

机译:影响软复曲面角膜接触镜验配的角膜地形的定量描述。

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摘要

PURPOSE: Empirical soft toric contact lens fitting based on manifest refraction and keratometry often presents unanticipated fitting and power errors upon initial lens dispensing. However, corneal topography may provide features that influence soft toric lens performance, flexure, and back vertex power in situ, which may assist in improved fitting guidelines. In this study, quantitative topographic descriptors were generated and analyzed as potential variables in predicting soft toric fitting success. METHODS: One hundred five eyes of 54 patients were empirically fit with back surface toric, prism ballasted, soft contact lenses after videokeratography was performed with the EyeSys 2000 (v. 4.0) or Humphrey Atlas (v. A6) instrument. Custom software was written to generate 54 separate quantitative descriptors of shape and astigmatism from the raw data files. A logistic regression was used to determine which variables significantly contributed to a successful or failed fit. RESULTS: Two types of empirical fitting failures were identified: loose fit (n = 15) and power errors (n = 17). The following variables were associated with a fitting failure: flat simulated keratometry (SimKf2b) within the central 3 mm zone, steep simulated keratometry (SimKs2b) within the central 3 mm zone, a difference between central and peripheral flat meridian axis (DIFFAXIS), and a difference between central and peripheral astigmatism (DIFFASTIG). For fitting failures caused by power errors, a larger steep SimKs2b (p< 0.01) and smaller DIFFAXIS (p< 0.05) were associated with a failed fit. For failures caused by physical fit of a selected base curve, a smaller DIFFAXIS (p< 0.05), larger steep SimKs2b (p< 0.05), and larger DIFFASTIG (p< 0.01) were associated with a failed fit. CONCLUSIONS: Novel quantitative descriptors of corneal shape and toricity derived from topography are associated with empirical soft toric contact lens fitting failures. Future algorithms or recommendations for improved soft toric lens selection may be derived from such indices to develop a predictive model for successful soft toric lens fitting using corneal topography data.
机译:目的:基于明显的屈光度和角膜测量法的经验性软复曲面角膜接触镜配戴通常会在初次配戴眼镜时出现意料之外的配戴和屈光不正。但是,角膜地形图可能会提供影响软复曲面镜片性能,弯曲和原位后顶屈光力的特征,这可能有助于改善拟合准则。在这项研究中,定量地形描述符被生成并分析为预测软复曲面拟合成功的潜在变量。方法:使用EyeSys 2000(v。4.0)或Humphrey Atlas(v。A6)仪器进行视频角膜切开术后,根据经验,对54例患者的150只眼配戴了背面复曲面,棱镜压载,软性隐形眼镜。编写了定制软件,以从原始数据文件中生成54个形状和散光的单独定量描述符。使用逻辑回归来确定哪些变量显着影响了拟合成功或失败。结果:确定了两种类型的经验拟合失败:松散拟合(n = 15)和功率误差(n = 17)。以下变量与拟合失败有关:中心3 mm区域内的平面模拟角膜曲率(SimKf2b),中心3 mm区域内的陡峭模拟角膜曲率(SimKs2b),中心和外围平面子午线轴之间的差(DIFFAXIS)和中央和周边散光(DIFFASTIG)之间的差异。对于由功率误差引起的拟合失败,较大的陡峭SimKs2b(p <0.01)和较小的DIFFAXIS(p <0.05)与拟合失败相关。对于由选定基准曲线的物理拟合导致的故障,较小的DIFFAXIS(p <0.05),较大的陡峭SimKs2b(p <0.05)和较大的DIFFASTIG(p <0.01)与拟合失败相关。结论:从地形学得出的新颖的角膜形状和复曲面定量描述词与经验性软复曲面角膜接触镜验配失败有关。可以从这样的指标中得出用于改进的软复曲面镜片选择的未来算法或建议,以开发使用角膜地形图数据成功进行软复曲面镜片拟合的预测模型。

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