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Light-intensity distribution in eccentric photorefraction crescents

机译:偏心光折射新月形的光强度分布

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We try to improve the accuracy of eccentric photorefraction by taking more information into account than just the size and tilt of the crescent. Based on Gaussian optics and the assumption of an isotropic scattering retina, a theoretical analysis of the light-intensity distribution in the pupils of astigmatic eyes is presented. The method is applied to different photorefractor setups (point light source, long linear light,source, knife-edge aperture, and circular aperture). In the case of a knife-edge aperture the crescent structure can be formulated analytically. In the case of a circular aperture an analytic description is possible only for spherical refractive errors, but astigmatic refractive errors can be determined from crescent parameters with neural networks. (C) 1998 Optical Society of America. [References: 23]
机译:我们试图通过考虑更多信息而不只是新月形的大小和倾斜度来提高偏心光折射的准确性。基于高斯光学和各向同性散射视网膜的假设,对散光眼瞳孔中的光强度分布进行了理论分析。该方法适用于不同的光折射仪设置(点光源,长线性光源,光源,刀口光圈和圆形光圈)。在刀口光圈的情况下,新月形结构可以解析地表示。在圆形孔的情况下,仅对球面屈光不正进行分析描述,但可以使用神经网络根据新月形参数确定像散屈光不正。 (C)1998年美国眼镜学会。 [参考:23]

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