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Generalized ray tracing method for the calculation of the peripheral refraction induced by an ophthalmic lens

机译:用于计算眼科镜片引起的周边屈光的广义射线追踪方法

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摘要

Peripheral refraction, the refractive error present outside the main direction of gaze, has lately attracted interest due to its alleged relationship with the progression of myopia. The ray tracing procedures involved in its calculation need to follow an approach different from those used in conventional ophthalmic lens design, where refractive errors are compensated only in the main direction of gaze. We present a methodology for the evaluation of the peripheral refractive error in ophthalmic lenses, adapting the conventional generalized ray tracing approach to the requirements of the evaluation of peripheral refraction. The nodal point of the eye and a retinal conjugate surface will be used to evaluate the three-dimensional distribution of refractive error around the fovea. The proposed approach enables us to calculate the three-dimensional peripheral refraction induced by any ophthalmic lens at any direction of gaze and to personalize the lens design to the requirements of the user. The complete evaluation process for a given user prescribed with a-5.76D ophthalmic lens for foveal vision is detailed, and comparative results obtained when the geometry of the lens is modified and when the central refractive error is over-or undercorrected. The methodology is also applied for an emmetropic eye to show its application for refractive errors other than myopia.
机译:周边屈光是存在于凝视主要方向之外的屈光不正,近来由于其与近视发展的关系而引起了人们的兴趣。计算中涉及的光线追踪程序需要采用不同于传统眼镜片设计中使用的方法,在传统眼镜片设计中,屈光不正仅在主视线方向上得到补偿。我们提出了一种用于评估眼科镜片的周边屈光不正的方法,将常规的广义射线跟踪方法适应于评估周边屈光的要求。眼睛的结点和视网膜共轭表面将用于评估中央凹周围屈光不正的三维分布。所提出的方法使我们能够计算任何眼科镜片在任何注视方向上引起的三维周边屈光,并使镜片设计个性化以满足用户的要求。详细说明了使用5.76D中央凹视力眼镜片对给定用户的完整评估过程,并给出了当修改镜片的几何形状以及中心屈光误差过大或不足时得到的比较结果。该方法还适用于正视眼,以表明其可用于除近视以外的屈光不正。

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