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A porohyperelastic finite element model of the eye: the influence of stiffness and permeability on intraocular pressure and optic nerve head biomechanics

机译:眼睛的多孔高弹性有限元模型:刚度和通透性对眼内压和视神经头生物力学的影响

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Progressively deteriorating visual field is a characteristic feature of primary open-angle glaucoma (POAG), and the biomechanics of optic nerve head (ONH) is believed to be important in its onset. We used porohyperelasticity to model the complex porous behavior of ocular tissues to better understand the effect variations in ocular material properties can have on ONH biomechanics. An axisymmetric model of the human eye was constructed to parametrically study how changes in the permeabilities of retina-Bruch's-choroid complex as well as how changes in the stiffness of the lamina cribrosa (LC) and sclera affect IOP, LC strains, and translaminar interstitial pressure gradients (TLIPG). Decreasing k(RBC) from 5 x 10(-12) to 5 x 10(-13) m/s increased IOP and LC strains by 17%, and TLIPG by 21%. LC strains increased by 13% and 9% when the scleral and LC moduli were decreased by 48% and 50%, respectively. In addition to the trabecular meshwork and uveoscleral pathway, the retina-Bruch's-choroid complex had an important effect on IOP, LC strains, and TLIPG. Changes in k(RBC) and scleral modulus resulted in nonlinear changes in the IOP, and LC strains especially at the lowest k(TM) and k(UVSC).. This study demonstrates that porohyperelastic modeling provides a novel method for computationally studying the biomechanical environment of the ONH. Porohyperelastic simulations of ocular tissues may help provide further insight into the complex biomechanical environment of posterior ocular tissues in POAG.
机译:视野逐渐恶化是原发性开角型青光眼(POAG)的特征,而视神经乳头(ONH)的生物力学被认为在其发病中很重要。我们使用孔隙超弹性对眼组织的复杂多孔行为进行建模,以更好地了解眼材料特性对ONH生物力学的影响。建立了人眼的轴对称模型,以参数研究视网膜-布鲁赫-脉络膜复合体的通透性变化以及筛板(LC)和巩膜的刚度变化如何影响IOP,LC应变和跨膜间隙压力梯度(TLIPG)。将k(RBC)从5 x 10(-12)m / s降低到5 x 10(-13)m / s,IOP和LC应变增加了17%,TLIPG增加了21%。当巩膜模量和LC模量分别降低48%和50%时,LC应变分别增加13%和9%。除了小梁网和葡萄膜巩膜途径,视网膜-布鲁赫-脉络膜复合体对IOP,LC菌株和TLIPG也有重要作用。 k(RBC)和巩膜模量的变化导致了IOP和LC应变的非线性变化,尤其是在最低k(TM)和k(UVSC)处。。 ONH的环境。眼组织的孔隙超弹性模拟可能有助于进一步了解POAG中后眼组织的复杂生物力学环境。

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