首页> 外文期刊>Computer methods in biomechanics and biomedical engineering >A forward incremental prestressing method with application to inverse parameter estimations and eye-specific simulations of posterior scleral shells
【24h】

A forward incremental prestressing method with application to inverse parameter estimations and eye-specific simulations of posterior scleral shells

机译:前向增量式预应力方法在后巩膜壳反参数估计和眼具体模拟中的应用

获取原文
获取原文并翻译 | 示例

摘要

Numerical simulations or inverse numerical analyses of individual eyes or eye segments are often based on an eye-specific geometry obtained from in vivo medical images such as computed tomography (CT) scans or from in vitro 3D digitiser scans. These eye-specific geometries are usually measured while the eye is subjected to internal pressure. Due to the nonlinear stiffening of the collagen fibril network in the eye, numerical incorporation of the pre-existing stress/strain state may be essential for realistic eye-specific computational simulations. Existing prestressing methods either compute accurate predictions of the prestressed state or guarantee a unique solution. In this contribution, a forward incremental prestressing method is presented which unifies the advantages of the existing approaches by providing accurate and unique predictions of the pre-existing stress/strain state at the true measured geometry. The impact of prestressing is investigated on (i) the inverse constitutive parameter identification of a synthetic sclera inflation test and (ii) an eye-specific simulation that estimates the realistic mechanical response of a pre-loaded posterior monkey scleral shell. Evaluation of the pre-existing stress/strain state in the inverse analysis had a significant impact on the reproducibility of the constitutive parameters but may be estimated based on an approximative approach. The eye-specific simulation of one monkey eye shows that prestressing is required for accurate displacement and stress/strain predictions. The numerical results revealed an increasing error in displacement, strain and stress predictions with increasing pre-existing pressure load when the pre-stress/strain state is disregarded. Disregarding the prestress may lead to a significant underestimation of the strain/stress environment in the sclera and overestimation in the lamina cribrosa.
机译:单眼或眼段的数值模拟或逆数值分析通常基于从体内医学图像(如计算机断层扫描(CT)扫描或体外3D数字化仪扫描)获得的特定于眼睛的几何形状。这些特定于眼睛的几何形状通常是在眼睛受到内部压力时测量的。由于眼睛中胶原蛋白纤维网络的非线性僵硬,因此预先存在的应力/应变状态的数值合并对于实际的特定于眼睛的计算仿真可能是必不可少的。现有的预应力方法要么计算出预应力状态的准确预测值,要么保证唯一的解决方案。在此贡献中,提出了一种正向增量式预应力方法,该方法通过在真实测量的几何形状下提供预先存在的应力/应变状态的准确而独特的预测来统一现有方法的优点。研究了预应力对(i)合成巩膜充气测试的逆本构参数识别和(ii)特定眼睛的模拟,该模拟估计了预加载的后猴巩膜壳的实际机械响应。在逆分析中评估预先存在的应力/应变状态对本构参数的可再现性有重大影响,但可以基于近似方法进行估算。一只猴子眼睛的特定于眼睛的仿真表明,要进行精确的位移和应力/应变预测,就需要预应力。数值结果表明,当忽略预应力/应变状态时,位移,应变和应力预测的误差会随着预先存在的压力载荷的增加而增加。忽略预应力可能会导致巩膜中的应变/应力环境明显偏低,而筛板则偏高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号