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Biomechanical stability of short versus long proximal femoral nails in osteoporotic subtrochanteric A3 reverse-oblique femoral fractures: a cadaveric study

机译:骨质疏松性转子下 A3 反向斜股骨骨折中短与长股骨近端指甲的生物力学稳定性:尸体研究

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摘要

Purpose Due to the demographic change towards an older society, osteoporosis-related proximal femur fractures are steadily increasing. Intramedullary nail osteosyntheses are available in different lengths, where the field of application overlaps. The aim of this study was to investigate whether subtrochanteric fractures can also be treated stably using a short femoral intramedullary nail in cadaveric bones. Methods A short PFNA and a long PFNA were implanted in both seven artificial bones and osteoporotic human specimens. A standardized AO 31-A3 (reverse-oblique) fracture was placed in the specimens with a lateral fracture spur 2 cm proximal to the distal locking screw (short PFNA) and embedded. The simulated iliotibial tract was preloaded to 50 N. The force was applied at 10 mm/min up to a force of 200-800 N (artificial bones) and 200-400 N (human specimens). The dislocation of the fracture gap, the axial bone stiffness of bone construct and the force curve of the tractus iliotibialis were measured. Results There is no difference in the use of a short versus long PFNA in terms of stiffness of the overall construct and only a slight increase in dislocation in the fracture gap results with short PFNA compared to a long intramedullary nail. Conclusion In summary of the available literature, the present study supports the thesis that there is no clinical difference between long versus short nails in A3 femur fractures. Furthermore, the present study defines a safe biomechanical range of fracture extension above the locking screw of the short intramedullary nail.
机译:目的 由于人口结构向老龄化社会转变,与骨质疏松症相关的股骨近端骨折正在稳步增加。髓内指甲骨合成有不同的长度,应用领域重叠。本研究的目的是探讨转子下骨折是否也可以使用尸体骨中的短股骨髓内钉稳定治疗。方法 将短PFNA和长PFNA植入7个人骨和骨质疏松性人体标本中。将标准化的 AO 31-A3(反向斜)骨折放置在标本中,在远端锁定螺钉(短 PFNA)近端 2 cm 处有横向骨折刺并嵌入。模拟髂胫束预加载至50 N。以 10 mm/min 的速度施加力,力为 200-800 N(人造骨骼)和 200-400 N(人体标本)。测量骨折间隙脱位、骨结构轴向骨刚度及髂胫束受力曲线。结果 在整体结构的刚度方面,使用短PFNA与长PFNA没有差异,与长髓内钉相比,短PFNA的骨折间隙脱位结果仅略有增加。结论 综上所述,本研究支持A3股骨骨折长指甲与短指甲在临床上无差异的论点。此外,本研究定义了短髓内钉锁定螺钉上方骨折延伸的安全生物力学范围。

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