Institute of New Technologies and Applied Informatics, Faculty of Mechatronics, Informatics and Interdisciplinary Studies, Technical University of Liberec, Studentská 1402/2, 461 17, Liberec, Czech Republic.
Department of Anatomy, Faculty of Medicine in Hradec Králové, Charles University, Šimkova 870, 500 03, Hradec Králové, Czech Republic.
Sci Rep. 2021 Aug 3;11(1):15690. doi: 10.1038/s41598-021-94998-5.
A new metric for the quantitative and qualitative evaluation of bone stiffness is introduced. It is based on the spectral decomposition of stiffness matrix computed with finite element method. The here proposed metric is defined as an amplitude rescaled eigenvalues of stiffness matrix. The metric contains unique information on the principal stiffness of bone and reflects both bone shape and material properties. The metric was compared with anthropometrical measures and was tested for sex sensitivity on pelvis bone. Further, the smallest stiffness of pelvis was computed under a certain loading condition and analyzed with respect to sex and direction. The metric complements anthropometrical measures and provides a unique information about the smallest bone stiffness independent from the loading configuration and can be easily computed by state-of-the-art subject specified finite element algorithms.
引入了一种新的骨刚度定量和定性评估的度量方法。它基于有限元法计算的刚度矩阵的谱分解。这里提出的度量定义为刚度矩阵的特征值的振幅缩放。该度量包含了关于骨主刚度的独特信息,反映了骨的形状和材料特性。该度量与人体测量学指标进行了比较,并在骨盆骨上测试了性别敏感性。此外,在特定的加载条件下计算了骨盆的最小刚度,并根据性别和方向进行了分析。该度量补充了人体测量学指标,提供了关于最小骨刚度的独特信息,独立于加载配置,并且可以通过最先进的基于主题的有限元算法轻松计算。