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Biomechanics analysis for the treatment of ischemic necrosis of the femoral head by using an interior supporting system

机译:内支撑系统治疗股骨头缺血性坏死的生物力学分析

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Objective: This work aims to perform a biomechanical test to evaluate the effect of interior supporting system and tantalum rod in simulating the treatment of ischemic necrosis of the femoral head. Method: Three models were established: control group (group A), interior supporting system group (group B), and tantalum rod group (group C). Step-by-step loading was applied on the top of the femoral head until femoral head damage occurs by using the testing machine of the material test system. Strain and maximum load were applied until the femoral head collapses. The damage to the trochanteric fossa, femur calcar, and greater trochanter were compared. Results: (1) The strain on the trochanteric fossa shows the following order: group C > group A and group B (P < 0.05). No significant difference was observed among groups for the other parts (P > 0.05). (2) The maximum load in group B is larger than that in groups A and C (P < 0.05). No significant difference in the maximum load was observed among the three groups when the femoral head was destroyed. Conclusions: The compression strain and bearing load of the femoral head are close to normal after placement of an interior supporting system and tantalum rod. The interior supporting system helps prevent femoral head collapse.
机译:目的:这项工作旨在进行生物力学测试,以评估内部支撑系统和钽棒在模拟股骨头缺血性坏死的治疗中的作用。方法:建立三个模型:对照组(A组),内部支撑系统组(B组)和钽棒组(C组)。通过使用材料测试系统的测试机,在股骨头的顶部进行逐步加载,直到发生股骨头损伤。施加应变和最大载荷直到股骨头塌陷。比较了对转子粗隆窝,股骨腓骨和较大转子的损伤。结果:(1)股骨转子上的应变表现为以下顺序:C组。 A组和B组(P< 0.05)。在其他部分的各组之间未观察到显着差异(P> 0.05)。 (2)B组的最大负载大于A和C组的最大负载(P< 0.05)。当股骨头被破坏时,三组之间没有观察到最大负荷的显着差异。结论:放置内部支撑系统和钽棒后,股骨头的压缩应变和承载载荷接近正常值。内部支撑系统有助于防止股骨头塌陷。

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