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首页> 外文期刊>Journal of pediatric orthopaedics >Biomechanical Comparison of Stainless Steel and Titanium Nails for Fixation of Simulated Femoral Fractures.
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Biomechanical Comparison of Stainless Steel and Titanium Nails for Fixation of Simulated Femoral Fractures.

机译:不锈钢和钛钉固定模拟股骨骨折的生物力学比较。

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摘要

Flexible intramedullary nails are commonly used to treat femoral fractures in children. This study evaluated the biomechanical differences between stainless steel and titanium nails when securing transverse and comminuted fractures in a synthetic femur model. Retrograde flexible stainless steel and titanium nails placed in a divergent "C" pattern were mechanically tested, and axial rotation and compression stiffness were analyzed with a two-way ANOVA. Rotational stability was significantly greater for titanium nails than stainless steel nails for both fracture patterns. Axial compression stiffness was significantly greater for titanium nails than stainless steel nails for both fracture patterns. There was no statistical difference between materials for axial "failure" load that produced 5 mm of shortening. Titanium intramedullary nails were more stable than stainless steel nails in torsion and axial compression. Both materials stabilized simulated fractures at levels beyond physiologic non-weight-bearing loads without permanent deformation.
机译:柔性髓内钉通常用于治疗儿童股骨骨折。这项研究评估了在合成股骨模型中固定横向和粉碎性骨折时不锈钢和钛钉之间的生物力学差异。机械测试了呈“ C”形发散的逆行柔性不锈钢和钛钉,并通过双向ANOVA分析了轴向旋转和压缩刚度。对于两种骨折模式,钛钉的旋转稳定性均显着大于不锈钢钉。对于两种断裂方式,钛钉的轴向压缩刚度均显着大于不锈钢钉。轴向“失效”载荷产生5mm缩短的材料之间没有统计差异。钛制髓内钉在扭转和轴向压缩方面比不锈钢钉更稳定。两种材料都将模拟骨折稳定在超出生理非承重负荷的水平,并且没有永久变形。

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