首页> 外文期刊>Journal of biomaterials and tissue engineering >Mechanical Properties of the Human Sclera Under Various Strain Rates: Elastic, Hyperelastic, and Viscoelastic Models
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Mechanical Properties of the Human Sclera Under Various Strain Rates: Elastic, Hyperelastic, and Viscoelastic Models

机译:各种应变率下人体巩膜的力学性能:弹性,超弹性和粘弹性模型

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摘要

The sclera is the white outer shell of the eye which its material properties have a key asset for preserving the form of the eye against the exterior and interior musculature and fluctuations forces induce by Intraocular Pressure (IOP). Besides, the biomechanical atmosphere of the head of the optic nerve is profoundly affected by the mechanical properties of the sclera. Computational modeling is a useful way to understand various types of the injuries to the eye, such as trauma. In order to produce reliable numerical results, it is necessary to input precise material properties into the numerical models. However, so far there is a paucity of knowledge about the dissimilarity of the scleral mechanical properties/behaviors under various loading conditions. Therefore, the aim of this study was to evaluate the linear elastic and nonlinear hyperelastic mechanical properties of the human sclera at eight different strain rates. The experimental results revealed a significant role of the strain rate on the elastic modulus and maximum stress in a way that the lowest and highest elastic modulus and stress were observed at the strain rate of 5 and 200 mm/min, respectively. Due to the nonlinear mechanical behavior of the sclera, three different constitutive strain energy density functions examined and their coefficients were calculated thru the linear/nonlinear optimization method. Finally, the agreement of the constitutive data with that of the experimental ones was verified using a FE model of the tensile test. Due to the strain rate dependency of the results, the viscoelastic time-dependentmechanical behavior of the sclera was also assessed through the relaxation Prony-series formulation. Although all these three material models can be used to address the mechanical response of the sclera, according to the objective of a numerical model and its possible applications, each of which can be selected. The outcomes of the concurrent study may have implications not only for understanding the linear elastic and nonlinear hyperelastic mechanical properties of the sclera tissue under various loading rates, but also for knowing the time-dependent viscoelastic mechanical properties of the sclera under the relaxation loading.
机译:巩膜是眼睛的白色外壳,其材料特性具有用于保留眼睛的形式,以防止外部和内部肌肉组织的形式,并且通过眼内压(IOP)诱导的波动力。此外,视神经头部的生物力学气氛深受巩膜的力学性质的影响。计算建模是了解眼睛的各种伤害的有用方法,例如创伤。为了产生可靠的数值结果,有必要将精确的材料特性输入数值模型。然而,到目前为止,在各种装载条件下巩膜机械性能/行为的不相似性就有缺乏知识。因此,本研究的目的是评估人体巩膜的线性弹性和非线性超塑性力学性能,以八种不同的应变速率。实验结果揭示了应变率对弹性模量和最大应力的显着作用,以便以5至200mm / min的应变率观察到最低和最高的弹性模量和应力。由于巩膜的非线性力学行为,通过线性/非线性优化方法计算了检查了三种不同的组成型应变能量密度函数及其系数。最后,使用Tensile试验的FE模型来验证本组则数据的协议。由于结果的应变率依赖性,还通过松弛柱系列配方评估了巩膜的粘弹性时间依赖性机械行为。虽然所有这三种材料模型可用于解决巩膜的机械响应,但根据数值模型及其可能的应用,虽然可以选择各种应用。同时研究的结果可能具有不仅用于了解各种装载率下巩膜组织的线性弹性和非线性超弹性力学性能,而且还具有在弛豫载荷下知道巩膜时的时间依赖性粘弹性机械性能。

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