Uchio E, Ohno S, Kudoh J, Aoki K, Kisielewicz L T
Department of Ophthalmology, Yokohama City University School of Medicine, Yokohama, Japan.
Br J Ophthalmol. 1999 Oct;83(10):1106-11. doi: 10.1136/bjo.83.10.1106.
BACKGROUND/AIMS: A simulation model of the human eye was developed. It was applied to the determination of the physical and mechanical conditions of impacting foreign bodies causing intraocular foreign body (IOFB) injuries.
Modules of the Hypermesh (Altair Engineering, Tokyo, Japan) were used for solid modelling, geometric construction, and finite element mesh creation based on information obtained from cadaver eyes. The simulations were solved by a supercomputer using the finite element analysis (FEA) program PAM-CRASH (Nihon ESI, Tokyo, Japan). It was assumed that rupture occurs at a strain of 18.0% in the cornea and 6.8% in the sclera and at a stress of 9.4 MPa for both cornea and sclera. Blunt-shaped missiles were shot and set to impact on the surface of the cornea or sclera at velocities of 30 and 60 m/s, respectively.
According to the simulation, the sizes of missile above which corneal rupture occurred at velocities of 30 and 60 m/s were 1.95 and 0.82 mm. The missile sizes causing scleral rupture were 0.95 and 0.75 mm at velocities of 30 and 60 m/s.
These results suggest that this FEA model has potential usefulness as a simulation tool for ocular injury and it may provide useful information for developing protective measures against industrial and traffic ocular injuries.
背景/目的:开发了一种人眼模拟模型。该模型用于确定导致眼内异物(IOFB)损伤的撞击异物的物理和力学条件。
基于从尸体眼睛获得的信息,使用Hypermesh(日本东京奥泰尔工程公司)模块进行实体建模、几何构造和有限元网格创建。模拟由超级计算机使用有限元分析(FEA)程序PAM-CRASH(日本东京日本ESI公司)求解。假设角膜应变达到18.0%、巩膜应变达到6.8%以及角膜和巩膜应力达到9.4 MPa时会发生破裂。分别以30和60 m/s的速度发射钝头导弹并使其撞击角膜或巩膜表面。
根据模拟,在30和60 m/s速度下导致角膜破裂的导弹尺寸分别为1.95和0.82 mm。在30和60 m/s速度下导致巩膜破裂的导弹尺寸分别为0.95和0.75 mm。
这些结果表明,该有限元分析模型作为眼损伤模拟工具具有潜在的实用性,并且可能为制定针对工业和交通性眼损伤的防护措施提供有用信息。