Aragón Institute of Engineering Research (I3A), University of Zaragoza, Spain.
Departamento de Física Aplicada, University of Zaragoza, Spain.
J Mech Behav Biomed Mater. 2021 Feb;114:104165. doi: 10.1016/j.jmbbm.2020.104165. Epub 2020 Oct 27.
The biomechanical stability of intraocular lenses (IOLs) must achieve high-quality optical performance and clinical outcomes after cataract surgery. For this reason, the quality and performance features of the IOLs should be previously analysed following the Standard ISO 11979-2 and ISO 11979-3. The ISO 11979-3 tries to reproduce the behaviour of the IOL in the capsular bag by compressing the lens between two clamps. With this test, it has been demonstrated that the haptic design is a crucial factor to obtain biomechanical stability. Hence, the main goal of this study was to design an aberration-free aspheric IOL and to study the influence of haptic geometry on the optical quality. For that purpose, 5 hydrophobic IOLs with different haptic design were manufactured and their biomechanical stability was compared experimentally and numerically. The IOLs were classified as stiff and flexible designs depending on their haptic geometry. The biomechanical response was measured by means of the compression force, the axial displacement, the angle of contact or contact area, the decentration, the tilt and the strain energy. The results suggest that in vitro and in silico compression tests present similar responses for the IOLs analysed. Furthermore, the flexible IOL designs presented better biomechanical stability than stiff designs. These results were correlated with the optical performance, where the optical quality decreases with worst biomechanical stability. This numerical methodology provides an indisputable advance regarding IOL designs, leading to reduce costs by exploring a feasible space of solutions during the product design process and prior to manufacturing.
人工晶状体(IOL)的生物力学稳定性必须在白内障手术后达到高质量的光学性能和临床效果。出于这个原因,应该根据标准 ISO 11979-2 和 ISO 11979-3 预先分析 IOL 的质量和性能特征。ISO 11979-3 试图通过在两个夹具之间压缩镜片来复制 IOL 在囊袋中的行为。通过这项测试,已经证明了触觉设计是获得生物力学稳定性的关键因素。因此,本研究的主要目标是设计一种无像差的非球面 IOL,并研究触觉几何形状对光学质量的影响。为此,制造了 5 种具有不同触觉设计的疏水性 IOL,并对其进行了实验和数值比较。根据其触觉几何形状,将 IOL 分类为刚性和柔性设计。通过压缩力、轴向位移、接触角或接触面积、偏心度、倾斜和应变能来测量生物力学响应。结果表明,体外和数值压缩测试对分析的 IOL 呈现出相似的响应。此外,柔性 IOL 设计比刚性设计具有更好的生物力学稳定性。这些结果与光学性能相关联,其中光学质量随最差的生物力学稳定性而降低。这种数值方法为 IOL 设计提供了一个无可争议的进展,通过在产品设计过程中和制造之前探索可行的解决方案空间,从而降低成本。