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Determining the Optomechanical Properties of Accommodating Gel for Lens Refilling Surgery using Finite Element Analysis and Numerical Ray-tracing

机译:使用有限元分析和数值射线追踪确定用于晶状体补充手术的调节凝胶的光机械性能

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A key step in the design of an accommodating gel to replace the natural contents of the presbyopic human crystalline lens is to find the equivalent homogeneous mechanical and material properties of the gel that yield comparable optical response as the lens with gradient properties. This process is compounded by the interplay between the mechanical and optical gradient. In order to find uniform properties of the lens both gradients need to be considered. In this paper numerical ray-tracing and finite element method (FEM) are implemented to investigate the effects of varying the uniform* elasticity and refractive index on the accommodative amplitude. Our results show that the accommodative amplitude can be expressed as a function of gel refractive index and Young's modulus of elasticity. In other words infinite sets of elasticity and refractive index exist that yield a certain amount of accommodation.
机译:设计适应性凝胶以代替老花眼人类晶状体的天然成分的关键步骤是找到与产生梯度特性的晶状体可比的光学响应的​​等效的均质机械和材料特性。机械梯度和光学梯度之间的相互作用加剧了这一过程。为了找到透镜的均匀特性,需要考虑两个梯度。本文采用数值射线追踪和有限元方法(FEM)来研究改变均匀*弹性和折射率对调节振幅的影响。我们的结果表明,调节幅度可以表示为凝胶折射率和杨氏弹性模量的函数。换句话说,存在无限组的弹性和折射率,它们产生一定程度的调节。

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