首页> 外文期刊>BMC Musculoskeletal Disorders >Biomechanical efficacy of AP, PA lag screws and posterior plating for fixation of posterior malleolar fractures: a three dimensional finite element study
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Biomechanical efficacy of AP, PA lag screws and posterior plating for fixation of posterior malleolar fractures: a three dimensional finite element study

机译:AP,PA lag螺钉和后钢板固定后踝骨折的生物力学功效:三维有限元研究

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Clinically there are different fixation methods used for fixation of the posterior malleolar fractures (PMF), but the best treatment modality is still not clear. Few studies have concentrated on this issue, least of all using a biomechanical comparison. The purpose of this study was to carry out a computational comparative biomechanics of three different commonly used fixation constructs for the fixation of PMF by finite element analysis (FEA). Computed tomography (CT) images were used to reconstruct three dimensional (3D) model of the tibia. Computer aided design (CAD) software was used to design 3D models of PMF. Finally, 3D models of PMF fixed with two antero-posterior (AP) lag screws, two postero-anterior (PA) lag screws and posterior plate were simulated through computational processing. Simulated loads of 500?N, 1000?N and 1500?N were applied to the PMF and proximal ends of the models were fixed in all degrees of freedom. Output results representing the model von Mises stress, relative fracture micro-motion and vertical displacement of the fracture fragment were analyzed. The mean vertical displacement value in the posterior plate group (0.52?mm) was lower than AP (0.68?mm) and PA (0.69?mm) lag groups. Statistically significant low amount of the relative micro-motion (P?
机译:临床上有不同的固定方法可用于固定后踝骨折(PMF),但最佳治疗方式仍不清楚。很少有研究集中在这个问题上,最不重要的是使用生物力学比较。这项研究的目的是通过有限元分析(FEA)对三种不同的常用固定结构进行PMF固定的计算比较生物力学。计算机断层扫描(CT)图像用于重建胫骨的三维(3D)模型。使用计算机辅助设计(CAD)软件来设计PMF的3D模型。最后,通过计算处理模拟了用两个前后(AP)方钉,两个后-前(PA)方钉和后板固定的PMF的3D模型。将500?N,1000?N和1500?N的模拟载荷施加到PMF,并在所有自由度上固定模型的近端。分析了代表冯·米塞斯模型应力,相对断裂微运动和断裂片段垂直位移的输出结果。后板组的平均垂直位移值(0.52?mm)低于AP(0.68?mm)和PA(0.69?mm)滞后组。在后板组中观察到统计学意义上的相对微运动量较低(P 0.05)。结论是,后板是生物力学上最稳定的固定PMF的固定方法。

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