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Biomechanical analyses of static and dynamic fixation techniques of retrograde interlocking femoral nailing using nonlinear finite element methods

机译:逆行交锁股骨钉静态和动态固定技术的非线性有限元方法的生物力学分析

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摘要

Femoral shaft fractures can be treated using retrograde interlocking nailing systems; however, fracture nonunion still occurs. Dynamic fixation techniques, which remove either the proximal or distal locking screws, have been used to solve the problem of nonunion. In addition, a surgical rule for dynamic fixation techniques has been defined based on past clinical reports. However, the biomechanical performance of the retrograde interlocking nailing systems with either the traditional static fixation technique or the dynamic fixation techniques has not been investigated by using nonlinear numerical modeling. Three-dimensional nonlinear finite element models were developed, and the implant strength, fixation stability, and contact area of the fracture surfaces were evaluated. Three types of femoral shaft fractures (a proximal femoral shaft fracture, a middle femoral shaft fracture, and a distal femoral shaft fracture) fixed by three fixation techniques (insertion of all the locking screws, removal of the proximal locking screws, or removal of the distal locking screws) were analyzed. The results showed that the static fixation technique resulted in sufficient fixation stability and that the dynamic fixation techniques decreased the failure risk of the implant and produced a larger contact area of the fracture surfaces. The outcomes of the current study could assist orthopedic surgeons in comprehending the biomechanical performances of both static and dynamic fixation techniques. In addition, the surgeons could also select a fixation technique based on the specific patient situation using the numerical outcomes of this study.
机译:股骨干骨折可以使用逆行连锁钉系统治疗;但是,仍然会发生骨折不愈合。使用动态固定技术去除近端或远端锁定螺钉,已解决了不愈合的问题。另外,基于过去的临床报告已经定义了用于动态固定技术的手术规则。但是,尚未通过非线性数值模型研究采用传统的静态固定技术或动态固定技术的逆行联锁钉系统的生物力学性能。建立了三维非线性有限元模型,并评估了植入物的强度,固定稳定性和骨折表面的接触面积。通过三种固定技术(插入所有锁定螺钉,拆除近端锁定螺钉或拆除股骨干螺钉)固定三种类型的股骨干骨折(股骨近端骨折,股骨中部骨折和股骨远端骨折)远端锁定螺钉)进行了分析。结果表明,静态固定技术具有足够的固定稳定性,而动态固定技术降低了植入物的失败风险,并产生了较大的骨折表面接触面积。本研究的结果可以帮助骨科医生了解静态和动态固定技术的生物力学性能。此外,外科医生还可以根据本研究的数值结果,根据具体患者情况选择固定技术。

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