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Simulation of airbag impact on eyes with?different axial lengths after transsclerally fixated posterior chamber intraocular lens by using finite element?analysis

机译:经巩膜固定后房型人工晶状体后气囊对不同轴向长度眼睛的冲击的有限元分析

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Purpose: To determine the biomechanical response of an impacting airbag on eyes with different axial lengths with transsclerally fixated posterior chamber intraocular lens (PC IOL).Materials and methods: Simulations in a model human eye were performed with a computer using a finite element analysis program created by Nihon, ESI Group. The airbag was set to be deployed at five different velocities and to impact on eyes with three different axial lengths. These eyes were set to have transsclerally fixated PC IOL by a 10-0 polypropylene possessing a tensile force limit of 0.16 N according to the United States Pharmacopeia XXII.Results: The corneoscleral opening was observed at a speed of 40 m/second or more in all model eyes. Eyes with the longest axial length of 25.85 mm had the greatest extent of deformity at any given impact velocity. The impact force exceeded the tensile force of 10-0 polypropylene at an impact velocity of 60 m/second in all eyes, causing breakage of the suture. Conclusion: Eyes with transsclerally fixated PC IOL could rupture from airbag impact at high velocities. Eyes with long axial lengths experienced a greater deformity upon airbag impact due to a thinner eye wall. Further basic research on the biomechanical response for assessing eye injuries could help in developing a better airbag and in the further understanding of ocular traumas.
机译:目的:通过巩膜固定后房型人工晶状体(PC IOL),确定撞击气囊对不同轴向长度的眼睛的生物力学反应。材料与方法:使用有限元分析程序在计算机上模拟人眼由ESI Group Nihon创建。安全气囊设置为以五种不同的速度展开,并撞击具有三种不同轴向长度的眼睛。根据美国药典XXII的规定,这些眼睛被10-0拉伸力极限为0.16 N的10-0聚丙烯经巩膜固定PC IOL。结果:在2000年,观察到角膜巩膜张开的速度为40 m /秒或更高。所有模特的眼睛。在任何给定的冲击速度下,最长轴长为25.85 mm的眼睛的变形程度最大。在所有的眼睛中,该冲击力在60 m / s的冲击速度下都超过了10-0聚丙烯的拉力,从而导致缝线破裂。结论:经巩膜固定PC IOL的眼睛在高速下可能因气囊撞击而破裂。由于安全气囊壁较薄,因此在受到安全气囊撞击时,具有较长轴向长度的眼睛会出现较大的变形。有关评估眼外伤的生物力学反应的进一步基础研究可以帮助开发更好的安全气囊和进一步了解眼外伤。

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