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Bone morphology allows estimation of loading history in a murine model of bone adaptation

机译:骨骼形态可估算小鼠骨骼适应模型中的负荷历史

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Bone adapts its morphology (density/microarchitecture) in response to the local loading conditions in such away that a uniform tissue loading is achieved ('Wolff's law'). This paradigm has been used as a basis for bone remodeling simulations to predict the formation and adaptation of trabecular bone. However, in order to predict bone architectural changes in patients, the physiological external loading conditions, to which the bone was adapted, need to be determined. In the present study, we developed a novel bone loading estimation method to predict such external loading conditions by calculating the loading history that produces themost uniform bone tissue loading.We applied thismethod to murine caudal vertebrae of two groups that were in vivo loaded by either 0 or 8 N, respectively. Plausible load cases were sequentially applied to micro-finite element models of the mice vertebrae, and scaling factors were calculated for each load case to derive the most uniform tissue strainenergy density when all scaled load cases are applied simultaneously. The bone loading estimation method was able to predict the difference in loading history of the two groups and the correct load magnitude for the loaded group. This result suggests that the bone loading history can be estimated from its morphology and that such a method could be useful for predicting the loading history for bone remodeling studies or at sites where measurements are difficult, as in bone in vivo or fossil bones.
机译:骨适应局部负荷条件而适应其形态(密度/微结构),以达到均匀的组织负荷(“沃尔夫定律”)。该范例已用作骨骼重塑模拟的基础,以预测小梁骨的形成和适应性。但是,为了预测患者的骨骼结构变化,需要确定骨骼要适应的生理外部负荷条件。在本研究中,我们开发了一种新颖的骨负荷估算方法,通过计算产生最均匀的骨组织负荷的负荷历史来预测此类外部负荷条件。我们将此方法应用于两组在体内被0或0负荷的鼠尾椎骨或8N。将合理的载荷工况顺序应用于小鼠椎骨的微有限元模型,并在同时应用所有缩放的载荷工况时,针对每个载荷工况计算比例因子,以得出最均匀的组织应变能密度。骨负荷估计方法能够预测两组负荷历史的差异以及负荷组的正确负荷幅度。该结果表明,可以根据骨的形态来估计骨的负荷历史,并且这种方法对于预测骨重建研究或在难以测量的部位(例如在体内的骨或化石骨中)的负荷历史可能是有用的。

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