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首页> 外文期刊>Optometry and vision science: official publication of the American Academy of Optometry >Scoring of progressive power lenses by means of user power maps
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Scoring of progressive power lenses by means of user power maps

机译:通过用户功率图对渐进屈光力镜片进行评分

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摘要

Purpose.: A progressive power lens (PPL) has a relatively complex power distribution, with regions for far, intermediate, and near vision, and also regions affected by aberrations, mainly astigmatism and defocus. Scoring techniques (Sheedy, Optom Vis Sci 2004;81:350-61) have been proposed to mark and classify PPLs according to their optical performance at each region. The objective of this study is to show that although scoring is useful to compare different lens designs, its outcome is highly dependent on the way power is defined and/or computed. Methods.: To demonstrate this, the progressive surfaces of many different current designs have been measured with a profiler. From these measurements and by means of exact ray tracing techniques, we obtain both the power maps that we would measure with a focimeter or a typical lens mapper and the power maps that the user perceives at the actual position of use. The scoring technique from Sheedy has then been applied to both types of maps. Results.: It is shown that the parameters that define the characteristics of a PPL when the power map is measured with a standard mapper are not significantly associated with the actual performance of the lens when it is fitted. In a similar way, it is shown that two lenses that have been optimized according to the same target power distribution may get completely different marks depending on the definition of power that has been used in the optimization process. We also propose a graphical method to easily grasp the overall PPL performance by simultaneously presenting four-dimensional information from the scoring technique. Conclusions.: Although in general Sheedy's test is an important tool to compare different PPL designs, it cannot be used to compare those designs optimized for improving user power from classical front side designs when power has been measured for both types of designs with a standard focimeter.
机译:目的:渐进屈光力镜片(PPL)具有相对复杂的屈光力分布,具有远视,中视和近视的区域,以及受像差(主要是像散和散焦)影响的区域。已经提出了计分技术(Sheedy,Optom Vis Sci 2004; 81:350-61),以根据PPL在每个区域的光学性能对其进行标记和分类。这项研究的目的是表明,尽管计分有助于比较不同的镜片设计,但其结果高度取决于定义和/或计算光焦度的方式。方法:为了证明这一点,已经使用轮廓仪测量了许多不同电流设计的渐进表面。通过这些测量并借助精确的射线追踪技术,我们既可以获取用聚焦计或典型镜头测绘仪测量的功率图,也可以获取用户在实际使用位置所感知的功率图。然后,Sheedy的计分技术已应用于两种类型的地图。结果:表明,当使用标准映射器测量功率图时,定义PPL特性的参数与安装镜头后的实际性能没有显着关联。以类似的方式显示,根据优化过程中使用的光焦度定义,已经根据相同的目标光焦度优化的两个镜头可能会获得完全不同的标记。我们还提出了一种图形方法,可以通过同时显示评分技术中的四维信息来轻松掌握总体PPL性能。结论:尽管总的来说,Sheedy的测试是比较不同PPL设计的重要工具,但是当使用标准聚焦计测量两种类型的设计的功率时,它不能用于比较优化的设计以改善经典前端设计的用户功率。

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