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Modeling individual-specific human optic nerve head biomechanics. Part II: influence of material properties

机译:模拟特定于个人的人类视神经乳头的生物力学。第二部分:材料性能的影响

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Biomechanical factors acting within the optic nerve head (ONH) likely play a role in the loss of vision that occurs in glaucoma. In a companion paper (Sigal et al. 2008), we quantified the biomechanical environment within individual-specific ONH models reconstructed from human post mortem eyes. Our goal in this manuscript was to use finite element modeling to investigate the influence of tissue material properties on ONH biomechanics in these same individual-specific models. A sensitivity analysis was carried out by simulating the effects of changing intraocular pressure on ONH biomechanics as tissue mechanical properties were systematically varied over ranges reported in the literature. This procedure was repeated for each individual-specific model described in the companion paper (Sigal et al. 2008). The outcome measures of the analysis were first and third principal strains, as well as the derived quantity of maximum shear strain, in ONH tissues. Scleral stiffness had by far the largest influence in ONH biomechanics, and this result was remarkably consistent across ONH models. The stiffnesses of the lamina cribrosa and pia mater were also influential. These results are consistent with those obtained using generic ONH models. The compressibility of the pre-laminar neural tissue influenced compressive and shearing strains. Overall, tissue material properties had a much greater influence on ONH biomechanics than did tissue geometry, as assessed by comparing results between our individual-specific models. Material properties of ONH tissues, particularly of the peripapillary sclera, play a dominant role in the mechanical response of an ONH to acute changes in IOP and may be important in the pathogenesis of glaucoma. We need to better understand inter-individual differences in scleral biomechanical properties and whether they are clinically important.
机译:在青光眼中发生的视力丧失可能是由视神经乳头(ONH)内的生物力学因素引起的。在同伴论文中(Sigal等,2008),我们量化了从人类验尸眼睛重建的个体特异性ONH模型内的生物力学环境。我们在此手稿中的目标是使用有限元建模来研究在这些相同的特定于个体的模型中组织材料特性对ONH生物力学的影响。通过模拟眼内压变化对ONH生物力学的影响进行敏感性分析,因为组织力学性能在文献报道的范围内有系统地变化。对于伴侣论文中描述的每个特定于个体的模型,都重复此过程(Sigal等,2008)。分析的结果指标是ONH组织中的第一和第三主应变以及最大剪切应变的推导数量。迄今为止,巩膜刚度对ONH生物力学的影响最大,并且该结果在ONH模型之间非常一致。筛板和枕木的刚度也有影响。这些结果与使用通用ONH模型获得的结果一致。板前神经组织的可压缩性影响了压缩应变和剪切应变。总体而言,通过比较我们的个体特异性模型之间的结果评估,组织材料的性质对ONH生物力学的影响比组织几何形状大得多。 ONH组织,特别是乳头周围巩膜的物质特性,在ONH对IOP急性变化的机械反应中起主要作用,在青光眼的发病机理中可能很重要。我们需要更好地了解巩膜生物力学特性的个体差异以及它们在临床上是否重要。

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