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Development of a human eye model for visual performance assessment

机译:视觉性能评估的人眼模型的发展

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A biometry-based human eye model was developed by using the empirical anatomic and optical data of ocular parameters. The gradient refractive index of the crystalline lens was modeled by concentric conicoid isoindical surfaces and was adaptive to accommodation and age. The chromatic dispersion of homogeneous ocular media was described by Cauchy equations. The gradient equations for the refractive index of crystalline lens were modified at particular wavelengths according to the same dispersion model. Mie scattering was introduced to simulate volumetric light scattering in the crystalline lens. The optical performance of the eye model was evaluated in CodeV and ASAP and presented by the modulation transfer function (MTF) at single and multiple wavelengths. The chromatic optical powers obtained from this model matched that of physiological eyes. The scattering property was assessed by means of glare veiling luminance and compared with CIE general disability glare equation. This model is highly potential for investigating visual performance in ordinary lighting and display conditions and under the influence of glare sources.
机译:通过使用眼睛参数的经验解剖和光学数据开发了一种基于生物谱的人眼模型。结晶晶状体的梯度折射率由同心的冠状滴虫表面建模,并适应于住宿和年龄。 Cauchy方程描述了均匀眼培养基的色散。根据相同的分散模型,在特定波长的特定波长下修改晶体透镜折射率的梯度方程。引入MIE散射以模拟晶体透镜中的体积光散射。眼模型的光学性能在Codev和ASAP中评估并由单个和多个波长的调制传递函数(MTF)呈现。从该模型获得的色光功率匹配生理眼睛的匹配。通过眩光遮光亮度评估散射特性,并与CIE General Disability眩光方程进行比较。该模型是在普通照明和显示条件下以及眩光源的影响下调查视觉性能的强大潜力。

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