Department of Mechanical and Materials Engineering, University of Nebraska-Lincoln, United States.
Department of Mechanical and Materials Engineering, University of Nebraska-Lincoln, United States.
J Biomech. 2021 Jan 22;115:110127. doi: 10.1016/j.jbiomech.2020.110127. Epub 2020 Nov 10.
The lens capsule of the eye is important in focusing light onto the retina during the process of accommodation and, in later life, housing a prosthetic lens implanted during cataract surgery. Though considerable modeling work has characterized the mechanics of accommodation, little has been done to understand the mechanics of the lens capsule after cataract surgery. As such, we present the first 3-D finite element model of the post-surgical human lens capsule with an implanted tension ring and, separately, an intraocular lens to characterize the altered stress field compared to that in a model of the native lens capsule. All finite element models employed a Holzapfel hyperelastic constitutive model with regional variations in anisotropy. The post-surgical lens capsule demonstrated a dramatic perturbation to the stress field with mostly large reductions in stresses (except at the equator where the implant contacts the capsule) compared to native, wherein maximal changes in Cauchy stress were -100% and -145% for the tension ring and intraocular lens, respectively. However, implantation of the tension ring produced a more uniform stress field compared to the IOL. The magnitudes and distribution of the perturbed stress field may be an important driver of the fibrotic response of inhabiting lens epithelial cells and associated lens capsule remodeling after cataract surgery. Thus, the mechanical effects of an implant on the lens capsule could be an essential consideration in the design of intraocular lenses, particularly those with an accommodative feature.
眼睛的晶状体囊在调节过程中将光聚焦到视网膜上很重要,在以后的生活中,它还容纳白内障手术后植入的人工晶状体。尽管已经有相当多的建模工作来描述调节的力学特性,但对于白内障手术后晶状体囊的力学特性却知之甚少。因此,我们首次提出了带有植入张力环的术后人晶状体囊的三维有限元模型,以及单独的人工晶状体,以描述与天然晶状体囊模型相比,改变后的应力场。所有的有限元模型都采用 Holzapfel 超弹性本构模型,并具有各向异性的区域变化。与天然晶状体囊相比,术后晶状体囊的应力场发生了显著的变化,除了植入物与囊接触的赤道处外,大部分应力都明显降低,其中张力环和人工晶状体的最大柯西应力变化分别为-100%和-145%。然而,与人工晶状体相比,张力环的植入产生了更均匀的应力场。居住的晶状体上皮细胞的纤维化反应以及白内障手术后晶状体囊的相关重塑可能是居住的晶状体上皮细胞的纤维化反应以及白内障手术后晶状体囊的相关重塑的重要驱动力。因此,植入物对晶状体囊的力学影响可能是设计人工晶状体的一个重要考虑因素,特别是那些具有调节功能的人工晶状体。