Department of Orthopaedics, Chinese PLA General Hospital, Beijing, China.
Graduate School of the Second Military Medical University, Shanghai, China.
Injury. 2019 Mar;50(3):648-656. doi: 10.1016/j.injury.2019.02.008. Epub 2019 Feb 12.
Using finite element analysis and biomechanical tests, the biomechanical behaviors of Medial Sustainable Nail (MSN) and Proximal Femoral Nail Antirotation (PFNA) were compared for the fixation of fracture type of AO/OTA 31-A2.3.
Finite element software Abaqus 6.14 was used to conduct axial loading of 2100 N and we analyzed the von Mises stress distribution and the model displacement of two implant models. Biomechanical tests were separately conducted in the axial stiffness test and axial cyclical loading test on a mechanical testing machine.
The results indicate that von Mises stress of MSN was lower than that of PFNA, and the model displacement in the MSN group was lower than that in the PFNA group. In the axial stiffness tests, MSN group was stiffer than PFNA construct. With respect to the axial load to ultimate failure, the PFNA construct exhibited higher loads exceeding 4000 N while the MSN construct withstood 3313.8 ± 92.8 N. Specifically, F was 2178.6 ± 133.2 N of the MSN group and 1822.6 ± 93.1 N of the PFNA group (P = 0.001). Additionally, X was 9.8 ± 0.5 mm of the MSN group and 11.7 ± 0.7 mm of the PFNA group (P = 0.002). The MSN group exhibited superior performances in terms of the mean value of the vertical displacement, frontal rotation angle, and lateral rotation angle.
The results indicated that the MSN construct might exhibit a better biomechanical performance when compared with that of the PFNA in reducing displacement and anti-varus in fracture type of AO/OTA 31-A2.3.
通过有限元分析和生物力学测试,比较 Medial Sustainable Nail(MSN)和 Proximal Femoral Nail Antirotation(PFNA)在固定 AO/OTA 31-A2.3 骨折类型方面的生物力学行为。
使用有限元软件 Abaqus 6.14 对 2100N 的轴向加载进行分析,对两种植入物模型的 von Mises 应力分布和模型位移进行分析。生物力学测试分别在机械试验机上进行轴向刚度测试和轴向循环加载测试。
结果表明,MSN 的 von Mises 应力低于 PFNA,MSN 组的模型位移低于 PFNA 组。在轴向刚度测试中,MSN 组比 PFNA 结构更硬。关于轴向加载至最终失效,PFNA 结构表现出更高的负载,超过 4000N,而 MSN 结构承受 3313.8±92.8N。具体来说,MSN 组的 F 为 2178.6±133.2N,PFNA 组为 1822.6±93.1N(P=0.001)。此外,MSN 组的 X 为 9.8±0.5mm,PFNA 组为 11.7±0.7mm(P=0.002)。MSN 组在垂直位移、前向旋转角度和侧向旋转角度的平均值方面表现出更好的性能。
结果表明,与 PFNA 相比,MSN 结构在减少位移和防止 AO/OTA 31-A2.3 骨折类型的内翻方面可能具有更好的生物力学性能。