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首页> 外文期刊>Journal of orthopaedic science : >Comparative study of two materials for dynamic hip screw during fall and gait loading: titanium alloy and stainless steel.
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Comparative study of two materials for dynamic hip screw during fall and gait loading: titanium alloy and stainless steel.

机译:钛合金和不锈钢两种在跌落和步态负荷下用于动力髋螺钉的材料的比较研究。

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BACKGROUND: Internal fixation with dynamic hip screw is a choice of treatment for hip fractures to stabilize a femoral fracture. Choosing the proper implant and its material has a great effect on the healing process and failure prevention. The purpose of this analysis was to assess biomechanical behavior of dynamic hip screw with two different materials implanted in the femur during fall and gait. METHODS: A 3D finite element model of an intact femur and a 3D implant within the same femur were developed. A finite element analysis was carried out to establish the effect of load conditions and implant material properties on biomechanical behavior of the dynamic hip screw after internal fixation. Two load configurations are chosen: one simulating the stance phase of the normal gait cycle, and the other replicating a low-energy fall. The implanted femur was investigated with two different materials for the dynamic hip screw: stainless steel and titanium alloy. RESULTS: During stance, more stress is placed on the implanted femur compared with the intact femur. During a fall, the implanted femur is in a greater state of stress, which mostly occurs inside the dynamic hip screw. Titanium alloy decreases stress levels by an average of 40% compared with stainless steel. However, deformation is slightly reduced with a stainless steel dynamic hip screw during both load cases. CONCLUSIONS: After internal fixation, dynamic hip screw generates greater stresses within the implanted femur compared with the intact femur under the same loading conditions. A titanium alloy implant appears to undergo less stress from a low-energy fall compared with stainless steel and can be considered the preferred implant material. The critical parts of the dynamic hip screw are the forth distal screw and the plate.
机译:背景:动态髋螺钉内固定术是治疗髋部骨折以稳定股骨骨折的一种选择。选择合适的植入物及其材料对愈合过程和预防失败有很大影响。该分析的目的是评估在跌倒和步态过程中在股骨中植入两种不同材料的动力髋螺钉的生物力学行为。方法:建立完整股骨的3D有限元模型和同一股骨内的3D植入物。进行了有限元分析,以建立载荷条件和植入物材料特性对内固定后动力髋螺钉的生物力学行为的影响。选择了两种负载配置:一种模拟正常步态周期的姿态阶段,另一种复制低能量下降。用两种不同的动力髋螺钉材料对植入的股骨进行了研究:不锈钢和钛合金。结果:在站立的过程中,与完整的股骨相比,更多的压力施加在植入的股骨上。跌倒时,股骨处于较大的应力状态,这种应力主要发生在动髋螺钉内部。与不锈钢相比,钛合金平均可将应力等级降低40%。但是,在两种载荷情况下,均采用不锈钢动力髋螺钉稍微减小了变形。结论:在相同的负荷条件下,与完整的股骨相比,内固定后动态髋螺钉在股骨内产生更大的应力。与不锈钢相比,钛合金植入物由于低能下降而承受的应力较小,可以认为是首选的植入物材料。动态髋部螺钉的关键部分是第四远侧螺钉和板。

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