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A Biomechanical Comparison of Two Intramedullary Implants for Subtrochanteric Fracture in Two Healing Stages: A Finite Element Analysis

机译:两种愈合阶段中两转晶骨折的两种髓内植入物的生物力学比较:有限元分析

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摘要

Background. The biomechanical effect of two implants, namely, proximal femoral nail antirotation for Asia (PFNA-II) and Expert Asian Femoral Nail (A2FN), for treating subtrochanteric fracture during healing stages, is still unclear. Methods. A 3D finite element model of an intact femur was constructed and validated. The fractured and postoperative models were accordingly produced. The postoperative models were loaded with the peak joint forces during gait for the soft and hard callus stages. The effects of stress distribution on the implants, femoral head and callus, and the deformation of the proximal femur were examined. Results. Both implants showed similar biomechanical effect in two healing stages. As the healing duration increased, the von Mises stress of two implants and the tensile stress of the femoral head decreased, whereas the compressive stress of the femoral head increased. However, the PFNA-II operation resulted in higher stress on the implant, lower stress on the proximal femur, and lower compressive stress and higher tensile stress on the callus than A2FN operation. Conclusions. The A2FN implant may provide a biomechanically superior construct for subtrochanteric fracture healing. However, the upper screw of the A2FN implant may be more likely to be loose in the healing process.
机译:背景。两种植入物的生物力学效果,即亚洲(PFNA-II)和专家亚洲股骨指甲(A2FN)的近端股骨指甲(A2FN),用于治疗愈合阶段的子系统骨折,尚不清楚。方法。构建并验证了完整股骨的3D有限元模型。因此产生了裂缝和术后模型。在柔软和硬质愈伤组织的步态期间,术后模型加载峰值关节力。研究了应力分布对植入物,股骨头和愈伤组织的影响,以及近端股骨的变形。结果。两种植入物在两个愈合阶段显示出类似的生物力学效果。随着愈合持续时间增加,von误判两个植入物的应力和股骨头的拉伸应力下降,而股骨头的抗压应力增加。然而,PFNA-II操作导致植入物的应力较高,近端股骨上的应力降低,并且对愈伤组织的较低压缩应力和更高的拉伸应力比A2FN操作。结论。 A2FN植入物可提供用于子转子间骨折愈合的生物力学上优异的构建体。然而,在愈合过程中,A2FN植入物的上螺钉可能更可能松动。

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