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Anisotropic Finite Element Modeling Based on a Harmonic Field for Patient-Specific Sclera

机译:基于谐波场的患者特定巩膜的各向异性有限元建模

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摘要

Purpose. This study examined the influence of anisotropic material for human sclera. Method. First, the individual geometry of patient-specific sclera was reproduced from a laser scan. Then, high quality finite element modeling of individual sclera was performed using a convenient automatic hexahedral mesh generator based on harmonic field and integrated with anisotropic material assignment function. Finally, comparison experiments were designed to investigate the effects of anisotropy on finite element modeling of sclera biomechanics. Results. The experimental results show that the presented approach can generate high quality anisotropic hexahedral mesh for patient-specific sclera. Conclusion. The anisotropy shows significant differences for stresses and strain distribution and careful consideration should be given to its use in biomechanical FE studies.
机译:目的。这项研究检查了各向异性材料对人巩膜的影响。方法。首先,通过激光扫描复制患者特定巩膜的各个几何形状。然后,使用方便的基于谐波场并集成了各向异性材料分配功能的六面体网格生成器,对单个巩膜进行了高质量的有限元建模。最后,设计了对比实验以研究各向异性对巩膜生物力学有限元建模的影响。结果。实验结果表明,该方法可以为患者特定的巩膜生成高质量的各向异性六面体网格。结论。各向异性显示出应力和应变分布的显着差异,因此在生物力学有限元研究中应仔细考虑其各向异性。

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