David G, Pedrigi R M, Heistand M R, Humphrey J D
Department of Biomedical Engineering, Texas A&M University, College Station, TX 77843, USA.
J Biomech Eng. 2007 Feb;129(1):97-104. doi: 10.1115/1.2401188.
The lens capsule of the eye plays fundamental biomechanical roles in both normal physiological processes and clinical interventions. There has been modest attention given to the mechanical properties of this important membrane, however, and prior studies have focused on 1-D analyses of the data. We present results that suggest that the porcine anterior lens capsule has a complex, regionally dependent, nonlinear, anisotropic behavior. Specifically, using a subdomain inverse finite element method to analyze data collected via a new biplane video-based test system, we found that the lens capsule is nearly isotropic (in-plane) near the pole but progressively stiffer in the circumferential compared to the meridional direction as one approaches the equator. Because the porcine capsule is a good model of the young human capsule, there is strong motivation to determine if similar regional variations exist in the human lens capsule for knowledge of such complexities may allow us to improve the design of surgical procedures and implants.
眼睛的晶状体囊在正常生理过程和临床干预中都起着重要的生物力学作用。然而,人们对这一重要膜的力学性能关注较少,先前的研究主要集中在对数据的一维分析上。我们展示的结果表明,猪的前晶状体囊具有复杂的、区域依赖性的、非线性的各向异性行为。具体而言,我们使用子域逆有限元方法来分析通过一种基于双平面视频的新型测试系统收集的数据,发现晶状体囊在极点附近几乎是各向同性的(面内),但随着接近赤道,与子午线方向相比,圆周方向逐渐变硬。由于猪的晶状体囊是年轻人类晶状体囊的良好模型,因此很有必要确定人类晶状体囊中是否存在类似的区域差异,因为了解这些复杂性可能有助于我们改进手术程序和植入物的设计。