Kim Jung Jin, Kim Youkyung, Jang In Gwun
J Biomech Eng. 2016 Jul 1;138(7). doi: 10.1115/1.4033478.
Computational bone remodeling simulations have recently received significant attention with the aid of state-of-the-art high-resolution imaging modalities. They have been performed using localized finite element (FE) models rather than full FE models due to the excessive computational costs of full FE models. However, these localized bone remodeling simulations remain to be investigated in more depth. In particular, applying simplified loading conditions (e.g., uniform and unidirectional loads) to localized FE models have a severe limitation in a reliable subject-specific assessment. In order to effectively determine the physiological local bone loads for the volume of interest (VOI), this paper proposes a novel method of estimating the local loads when the global musculoskeletal loads are given. The proposed method is verified for the three VOI in a proximal femur in terms of force equilibrium, displacement field, and strain energy density (SED) distribution. The effect of the global load deviation on the local load estimation is also investigated by perturbing a hip joint contact force (HCF) in the femoral head. Deviation in force magnitude exhibits the greatest absolute changes in a SED distribution due to its own greatest deviation, whereas angular deviation perpendicular to a HCF provides the greatest relative change. With further in vivo force measurements and high-resolution clinical imaging modalities, the proposed method will contribute to the development of reliable patient-specific localized FE models, which can provide enhanced computational efficiency for iterative computing processes such as bone remodeling simulations.
借助最先进的高分辨率成像技术,计算骨重塑模拟最近受到了广泛关注。由于全有限元(FE)模型的计算成本过高,人们一直使用局部有限元模型而非全有限元模型来进行模拟。然而,这些局部骨重塑模拟仍有待更深入的研究。特别是,将简化的加载条件(例如均匀和单向载荷)应用于局部有限元模型在可靠的个体特异性评估中存在严重局限性。为了有效地确定感兴趣体积(VOI)的生理局部骨载荷,本文提出了一种在给定全局肌肉骨骼载荷时估计局部载荷的新方法。针对股骨近端的三个VOI,从力平衡、位移场和应变能密度(SED)分布方面对所提出的方法进行了验证。还通过扰动股骨头中的髋关节接触力(HCF)来研究全局载荷偏差对局部载荷估计的影响。力大小的偏差由于其自身最大的偏差而在SED分布中表现出最大的绝对变化,而垂直于HCF的角度偏差则提供了最大的相对变化。随着进一步的体内力测量和高分辨率临床成像技术的发展,所提出的方法将有助于开发可靠的患者特异性局部有限元模型,这可以为诸如骨重塑模拟等迭代计算过程提供更高的计算效率。