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Optical design of power adjustable sphero-cylindrical ophthalmic systems

机译:功率可调螺柱 - 圆柱形眼科系统的光学设计

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The need for affordable and sustainable ophthalmic systems for measurement and correction of refraction is well-recognized. Power-adjustable spectacles based on the Alvarez principle (transversal lateral movement of two lenses) have emerged as an innovative technology for this purpose. Within this framework our aim is to design novel power-adjustable ophthalmic systems applying a comprehensive optical design methodology. We present two designs using only two lenses: one is a sphero-cylindrical refractor based on three independent lateral movements. The second system is a spectacle providing spherical correction over different gaze directions. Our optical design methodology comprises several stages. We set a merit function where the oblique astigmatism and mean power error were evaluated for different configurations. The lenses have a planar and a third degree polynomial surface. The lenses are arranged with their planar surfaces in contact, so that the incoming light is only refracted by two surfaces. The merit function was optimized following a cascade approach where different surface parameters where optimized at successive steps. The spherical-cylindrical refractor is capable of measuring sphere powers ranging from -5.00 D to +5.00 D and cross-cylinders from -2.00 D to 2.00 D. The astigmatism and power errors are mostly below 0.1 D in absolute value for all the configurations. We also demonstrate a design for hypermetropia and presbyopia correction with a power variation from +0.5 D to +5 D.
机译:需要得到公认的对测量和校正的实惠和可持续的眼科系统的需求。基于Alvarez原理(两个镜头的横向运动)的可动力可调节眼镜已成为这一目的的创新技术。在此框架内,我们的目标是设计采用综合光学设计方法的新型动力可调眼科系统。我们仅使用两个镜头呈现两个设计:一个是基于三个独立的横向运动的球形圆柱形折射器。第二个系统是提供在不同凝视方向上的球形校正的景象。我们的光学设计方法包括多个阶段。我们设置了一个优异功能,在不同的配置中评估了倾斜散光和均值误差。镜片具有平面和第三度多项式表面。镜片布置有它们的平面表面接触,使得进入的光仅被两个表面折射。在级联方法之后优化优点函数,其中不同的表面参数在连续步骤中优化。球形圆柱形折射器能够测量范围从-5.00d至+5.00d的球体功率和-2.00 d到2.00 d的横圆柱。散光和功率误差大多低于0.1 d,绝对值为所有配置。我们还展示了具有从+0.5d至+5 d的功率变化的超级差异和老花眼校正的设计。

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