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首页> 外文期刊>BMC Musculoskeletal Disorders >Investigating the biomechanical function of the plate-type external fixator in the treatment of tibial fractures: a biomechanical study
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Investigating the biomechanical function of the plate-type external fixator in the treatment of tibial fractures: a biomechanical study

机译:研究板型外固定器在胫骨骨折治疗中的生物力学功能:生物力学研究

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BACKGROUND:The design of an external fixator with the optimal biomechanical function and the lowest profile has been highly pursued, as fracture healing is dependent on the stability and durability of fixation, and a low profile is more desired by patients. The plate-type external fixator, a novel prototype of an external tibial fixation device, is a low profile construct. However, its biomechanical properties remain unclear. The objective of this study was to investigate the stiffness and strength of the plate-type external fixator and the unilateral external fixator. We hypothesized that the plate-type external fixator could provide higher stiffness while retaining sufficient strength.METHODS:Fifty-four cadaver tibias underwent a standardized midshaft osteotomy to create a fracture gap model to simulate a comminuted diaphyseal fracture. All specimens were randomly divided into three groups of eighteen specimens each and stabilized with either a unilateral external fixator or two configurations of the plate-type external fixator. Six specimens of each configuration were tested to determine fixation stiffness in axial compression, four-point bending, and torsion, respectively. Afterwards, dynamic loading until failure was performed in each loading mode to determine the construct strength and failure mode.RESULTS:The plate-type external fixator provided higher stiffness and strength than the traditional unilateral external fixator. The highest biomechanics were observed for the classical plate-type external fixator, closely followed by the extended plate-type external fixator.CONCLUSIONS:The plate-type external fixator is stiffer and stronger than the traditional unilateral external fixator under axial compression, four-point bending and torsion loading conditions.
机译:背景:高度追求具有最佳生物力学功能和最低型材的外固定器的设计,因为骨折愈合取决于固定的稳定性和耐久性,并且患者更需要低调。板式外固定器是外部胫骨固定装置的新型原型,是低轮廓构建体。然而,其生物力学性质仍然不清楚。本研究的目的是研究板式外固定器和单侧外固定器的刚度和强度。我们假设板式外固定器可以提供更高的刚度,同时保持足够的强度。方法:五十四个尸体胫骨进行标准化的中间截骨骨切断,以产生骨折模型以模拟粉碎的椎间性骨折模型。将所有标本随机分为三组18个标本,并用单侧外固定器或两个配置的板式外固定器稳定。测试每个配置的六个标本以分别确定轴向压缩,四点弯曲和扭转中的固定刚度。然后,动态加载直到在每个装载模式下执行故障以确定构造强度和故障模式。结果:板式外固定器提供比传统的单侧外固定器更高的刚度和强度。古典板式外固定器观察到最高的生物力学,紧随其后的是延伸的板式外固定器。结论:板式外固定器比传统的单侧外固定器更易于轴向压缩,四点弯曲和扭转装载条件。

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