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Form follows function: a computational simulation exercise on bone shape forming and conservation

机译:形式跟随功能:关于骨骼形状形成和保存的计算模拟练习

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摘要

The present paper explores whether the shape of long bone shafts can be explained as a mere result of mechano-adapation. A computer simulation study was conducted in order to investigate adaptation processes of bone-like structures under load patterns comparable to those acting on the diaphysis of long bones. The aim of the study was to have a deeper look into the relationship between typical loading patterns and resulting bone shape and structure. The simulations are based on a mechanistic model approach for mechano-transduction and bone transformation. Results of the simulations are that axial torsion around the long axis is important for the evolvement and maintenance of tube-like structures. Of note such structures can form from a variety of starting geometries, provided that axial torsion is present. The selection of the set-point parameter for the regulation of load adapted bone transformation has an impact on the final structure as well. In conclusion, the present study confirms the mechanical environment’s potential to generate shaft-like structures and demonstrates the respective boundary conditions.
机译:本文探讨了仅是机械适应的结果是否可以解释长骨干的形状。为了研究在类似于长骨的骨干的载荷模式下,骨样结构的适应过程,进行了计算机模拟研究。该研究的目的是更深入地研究典型载荷模式与所产生的骨骼形状和结构之间的关系。模拟基于机械模型方法进行机械传导和骨骼转换。仿真结果表明,围绕长轴的轴向扭转对于管状结构的演变和维护至关重要。值得注意的是,只要存在轴向扭转,这种结构就可以由多种起始几何形状形成。选择用于调节负载适应性骨转化的设定点参数也对最终结构产生影响。总之,本研究证实了机械环境产生轴状结构的潜力,并证明了各自的边界条件。

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