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Finite element analysis and experimental evaluation of penetrating injury through the cornea

机译:通过角膜渗透损伤的有限元分析及实验评价

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Penetration injuries of the eye are among the most frequent causes of permanent visual impairment resulting from trauma. The purpose of this study was to determine the peak strain at which rupture occurs in the cornea due to a penetrating object. Probes of varying diameters (1.0, 1.5, and 2.0 mm) were pressed into the apex of the cornea of 36 human cadaveric eye specimens until perforation or rupture of the specimen at the cornea, limbus, or sclera occurred. An axisymmetric finite element model of the human globe was created to replicate the experimental set-up. The models were used to map the force-displacement response of the experiments and quantitatively determine a peak strain at which the eye ruptures. For the experiments, the average force at failure increased from the smallest to largest probe (p < 0.002). The average forces at failure are as follows: 30.5 +/- 5.5 N (1.0 mm probe); 40.5 +/- 8.3 N (1.5 mm probe); 58.2 +/- 14.5 N (2.0 mm probe). The force-displacement responses of the finite element models of all three probe sizes bounded and tracked the experimental data. In all cases, the peak strain at failure in the cornea was located on the posterior surface of the cornea, directly adjacent to the corneal apex. This strain was in the range of 29% to 33% for all models analyzed. In addition to determining an objective failure strain of corneal tissue, the model developed in this study can provide quantitative information for understanding the risk of penetrating eye injuries.
机译:眼睛的渗透伤是由创伤引起的永久性视力障碍的最常见原因之一。本研究的目的是确定由于穿透物体而发生角膜中发生破裂的峰值菌株。将不同直径(1.0,1.5和2.0毫米)的探针压入36人尸体眼睛标本的角膜顶点,直至角膜,戊坝或Sclera的样本的穿孔或破裂。创建了人体地球轴的轴对称有限元模型以复制实验设置。该模型用于映射实验的力 - 位移响应,并定量地确定眼睛破裂的峰应变。对于实验,失败的平均力从最小到最大探针增加(P <0.002)。失败的平均力如下:30.5 +/- 5.5 n(探针1.0mm); 40.5 +/- 8.3 n(探头1.5 mm); 58.2 +/- 14.5 n(2.0 mm探头)。所有三种探针尺寸的有限元模型的力 - 位移响应界限和跟踪实验数据。在所有情况下,角膜发生故障的峰菌株位于角膜的后表面,直接与角膜顶点相邻。对于分析的所有模型,这种菌株的范围为29%至33%。除了确定角膜组织的客观失效应变之外,本研究开发的模型还可以提供定量信息,以了解渗透眼损伤的风险。

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