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The effect of loading in mechanical response predictions of bone lengthening

机译:负荷对骨骼延长的机械反应预测的影响

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摘要

Intramedullary (IM) distractor nails have become a viable alternative in bone-distraction operations. Upon stabilization of the fractured/dissected limb via the nail, the resulting construct accommodates the load bearing function of the otherwise healthy limb. In establishing design performance targets for these devices, in vitro test conditions are widely accepted leaving the in vivo conditions aside. However, in vivo device failures due to distraction forces necessitate novel modeling considerations. It is especially important to simulate the loads in limb distraction, as this brings the bone-implant construct to a totally different regime than the hip-joint contact force (Point-Force Model, PFM). In this work we used a simplified approach to incorporate ligament stretching due to limb distraction via self-equilibrating spring elements in a finite-element setting (spring-force model, SFM). We compared the effect of loading type on load transmission paths through the locking pins, for these two distinct loading modes, namely, SFM and PFM. The two modes illustrate entirely different load transfer regimes around the boneail interface region. In order to avoid high contact stresses between the nail and the bone segments, it is advisable to keep the osteotomy away from the mid-range between the pin connections. It was also seen for both loading modes that including an additional pin at a load transfer location does not significantly alter the load carried by a single pin (the additional pin rather acts as a geometric stabilizer).
机译:髓内(IM)牵引钉已成为骨牵引手术的可行替代方法。在通过指甲使骨折/解剖的肢体稳定后,所得到的结构便适应了健康肢体的承重功能。在建立这些设备的设计性能目标时,体外测试条件被广泛接受,而忽略了体内条件。但是,由于分散力而导致的体内设备故障需要进行新颖的建模考虑。模拟四肢分散时的负荷尤为重要,因为这将使植骨结构达到与髋关节接触力完全不同的状态(Point-Force模型,PFM)。在这项工作中,我们采用一种简化的方法,通过在有限元设置(弹簧力模型,SFM)中通过自平衡弹簧元件使肢体分散而引起的韧带拉伸。对于这两种不同的加载模式,即SFM和PFM,我们比较了加载类型对通过锁定销的载荷传递路径的影响。这两种模式说明了围绕骨骼/指甲界面区域的完全不同的载荷传递方式。为了避免指甲和骨节之间的高接触应力,建议使截骨术远离针连接之间的中间范围。还可以看到,对于两种加载模式,在负载转移位置都包括一个附加的销并不会显着改变单个销所承受的负载(附加的销充当几何稳定器)。

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