Department of Mechanical Engineering, Kyushu University, 744 Motooka, Nishi-ku, Fukuoka 819-0395, Japan.
Basir Eye Health Research Center, Tehran, Iran.
J Mech Behav Biomed Mater. 2019 Feb;90:146-154. doi: 10.1016/j.jmbbm.2018.10.017. Epub 2018 Oct 16.
The purpose of this study was to perform a set of experimental indentation test to certify our proposed eye model enables to have a better deformation assessment for the eye globe under the indentation load compared to other eye models. To do that, twenty-four enucleated human globes were removed from the cadavers. A screw at 5 different loading rates indented to the eye globes and the resulting macroscopic force-displacement as a result of the deformation in the apex of the cornea was measured. The experimental results revealed significantly higher stiffness, elastic modulus, and maximum force for the globe at higher loading rates (50 and 100 mm/min) (n = 4 globes, p < 0.05, post hoc Scheffe method) compared to the lower ones (5, 10, and 20 mm/min). The mean stiffness, elastic modulus as well as the mean maximum force of 1.64 ± 0.38 N/mm, 303.40 ± 111.10 kPa, and 53.88 ± 17.63 N (Mean ± SD) were observed for the eye globes under all loading rates, respectively. Our eye model due to incorporating the anterior (cornea, aqueous body, and iris) and posterior (sclera, retina, and vitreous body) components showed a good agreement with force-displacement diagrams compared to that of the experimental results not only at lower but also at higher loading rates.
本研究的目的是进行一组实验压痕测试,以证明我们提出的眼睛模型在压痕载荷下比其他眼睛模型更能对眼球变形进行更好的评估。为此,从尸体中取出了 24 个眼球。用一个螺丝以 5 种不同的加载速率压入眼球,测量角膜顶点的变形引起的宏观力-位移。实验结果表明,在较高的加载速率(50 和 100mm/min)下(n=4 个眼球,p<0.05,事后 Scheffe 法),眼球的刚度、弹性模量和最大力显著较高,而在较低的加载速率(5、10 和 20mm/min)下则较低。在所有加载速率下,眼球的平均刚度、弹性模量和平均最大力分别为 1.64±0.38N/mm、303.40±111.10kPa 和 53.88±17.63N(平均值±标准差)。我们的眼睛模型由于结合了前(角膜、房水和虹膜)和后(巩膜、视网膜和玻璃体)成分,与实验结果的力-位移图相比,不仅在较低的加载速率下,而且在较高的加载速率下也有很好的一致性。