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Biomechanical properties of experimental myopia in the guinea pig

机译:实验性近视眼豚鼠的生物力学特性

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A lens induce myopia model in 12 healthy guinea pigs was used in this study. For each guinea pig, one eye was selected randomly for myopia model, another served as a paired control. After 45 days, Eye became myopic and elongated in myopia model. The alteration of eye volume with intraocular pressure was determined. Cornea and sclera strips were prepared for biomechanical properties measurement through uniaxial tension using Instron 5544 test machine. Our results showed that the ocular rigidity coefficient of myopia model eyeballs was lower than the control ones. Furthermore, under the physiological eye pressure, the elastic modulus of either sclera or cornea decreased significantly as compared to control ones. The ANSYS finite element simulation also confirmed that the maximal shape deformation of eyeball occurred in the polar of the post sclera and the maximal strain in the myopia model eyes was higher than the control ones.
机译:在这项研究中,使用了12头健康豚鼠的晶状体诱发近视模型。对于每只豚鼠,随机选择一只眼睛作为近视模型,另一只作为配对对照。 45天后,眼睛变得近视,并且在近视模型中拉长了眼睛。确定了眼压随眼压的变化。准备好角膜和巩膜条,以使用Instron 5544测试机通过单轴张力测量生物力学性能。我们的研究结果表明,近视眼模型的眼球刚度系数低于对照组。此外,在生理眼压下,巩膜或角膜的弹性模量与对照相比显着降低。 ANSYS有限元模拟还证实,眼球的最大形状变形发生在巩膜后极,并且近视模型眼的最大应变高于对照组。

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