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首页> 外文期刊>Journal of orthopaedic research >Mechanical characterization of external fixator stiffness for a rat femoral fracture model.
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Mechanical characterization of external fixator stiffness for a rat femoral fracture model.

机译:大鼠股骨骨折模型的外固定架刚度的机械表征。

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Clinical and experimental studies have shown that several mechanical factors influence the fracture healing process. One such factor, interfragmentary movement, is affected by loading and the stiffness of the fixation device. This study evaluated the stiffness of different external fixation devices for a rat femoral fracture model, using in vitro and analytical methods. The contribution to the stiffness of the fixation construct was dominated by the flexibility of the pins in relation to their offset, diameter, and material properties. The axial stiffness increased with decreasing offset and increasing pin diameter. Titanium pins resulted in significantly lower axial stiffness compared to stainless steel pins of the same design. The fixator body material and fixator length had a less pronounced influence on fixation stiffness. Mechanically characterized external fixation devices will allow in vivo study of the fracture healing process utilizing pre-calculated fracture fixation stiffness. These characterized fixation devices will allow controlled manipulation of the axial and shear interfragmentary movement to achieve a flexible fixation resulting in callus formation compared to a more rigid fixation limiting callus formation in a rat femoral fracture model.
机译:临床和实验研究表明,几种机械因素会影响骨折的愈合过程。一个这样的因素,即碎片间运动,受载荷和固定装置的刚度影响。这项研究使用体外和分析方法评估了大鼠股骨骨折模型的不同外固定装置的刚度。相对于销钉的偏移,直径和材料特性,销钉的柔韧性决定了对固定结构刚度的贡献。轴向刚度随偏移量的减小和销直径的增加而增加。与相同设计的不锈钢销钉相比,钛销钉导致的轴向刚度大大降低。固定器主体材料和固定器长度对固定刚度的影响较小。具有机械特征的外部固定装置将允许利用预先计算的骨折固定刚度对骨折愈合过程进行体内研究。与在大鼠股骨骨折模型中更严格的固定限制了愈伤组织的形成相比,这些特征化的固定装置将允许轴向和剪切碎片间运动的受控操纵以实现导致愈伤组织形成的柔性固定。

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