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首页> 外文期刊>Journal of Medical Devices >Finite Element Modeling of Inverted (Inside Out) Soft Contact Lenses
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Finite Element Modeling of Inverted (Inside Out) Soft Contact Lenses

机译:倒置(内向外)软性隐形眼镜的有限元建模

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摘要

Soft contact lenses (SCLs) can be inserted inside out with consequences for optical, mechanical, and on-eye comfort performance. Wearing lenses inside out may also cause corneal deformation especially with silicone hydrogel lenses. Since inside out insertion of SCLs cannot always be avoided, it is important to study their effects, and it may even be feasible to use these inside out forces to reshape the cornea. To study these possible scenarios, a finite element (FE) based model capable of simulating the inversion of soft contact lenses was developed and validated by comparing modeled results with laboratory measurements of lenses in right side and inside out conformations. In this study, the front surface contour of five SCLs (four commercially available and one custom design) was determined using a profile projector. The lenses were turned inside out, and the front surface contour was remeasured. The thickness profile obtained by a profilometer was "added" to the front surface shape in both orientations to derive the back surface shape. A detailed nonlinear 2D axisymmetric FE model of each lens in its right side in state was created, and the lens was inverted by applying a rigid probe. The modeled and measured inverted lens shapes were compared with respect to parameter alterations (sagittal depth (sag) and diameter) and overall geometry changes using a Procrustes analysis. Measured and modeled results revealed very substantial geometry changes when turning the lens inside out; however, the maximum sagittal deviation between measured and modeled inside out lens shapes was less than 0.05 mm over the central 6 mm half chord. Overall, the modeled results matched the inverted geometries for both parameter changes as well as overall shape changes. The developed FE model is able to predict the geometry of soft contact lenses when they are inverted.
机译:可以将柔软的隐形眼镜(SCL)内外插入,从而影响光学,机械和眼部舒适性。内外配戴镜片也可能导致角膜变形,尤其是对于硅水凝胶镜片。由于无法总是避免SCL由内而外的插入,因此研究其效果非常重要,甚至可以使用这些由内而外的力来重塑角膜。为了研究这些可能的情况,开发了一种能够模拟软性隐形眼镜倒置的基于有限元(FE)的模型,并通过将建模结果与右侧和由内而外构象的实验室测量结果进行了比较来进行验证。在这项研究中,使用轮廓投影仪确定了五个SCL(四个市售和一个定制设计)的前表面轮廓。将透镜内翻,然后重新测量前表面轮廓。通过轮廓仪获得的厚度轮廓在两个方向上被“添加”到前表面形状,以得出后表面形状。建立了每个透镜在其右侧状态下的详细的非线性2D轴对称有限元模型,并通过应用刚性探针使透镜翻转。使用Procrustes分析,比较了建模和测量的倒置镜片形状相对于参数变化(矢状深度(凹陷)和直径)和整体几何形状的变化。测量和建模的结果表明,将透镜内翻时,几何形状会发生很大的变化。但是,在中央6 mm的半弦上,实测和建模的内外透镜形状之间的最大矢状偏差小于0.05 mm。总体而言,对于参数变化以及整体形状变化,建模结果都与倒置的几何形状匹配。开发的有限元模型能够预测软隐形眼镜倒置后的几何形状。

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