首页> 外文期刊>Journal of Orthopaedic Translation >A cementless, proximally fixed anatomic femoral stem induces high micromotion with nontraumatic femoral avascular necrosis: A?finite element study
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A cementless, proximally fixed anatomic femoral stem induces high micromotion with nontraumatic femoral avascular necrosis: A?finite element study

机译:非骨水泥,近端固定的解剖型股骨干引起非创伤性股骨无血管坏死的高微运动:有限元研究

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Decrease in bone mineral density of metaphysis in patients with nontraumatic avascular necrosis of the femoral head (AVN) is considered the main factor leading to aseptic loosening of the femoral component. Researchers have hypothesized that a cementless, anatomic stem fixed proximally to the metaphysis has a higher risk for aseptic loosening than a straight stem that is fixed at the diaphysis in patients with nontraumatic AVN. The purpose of the current study was to evaluate the effects of cancellous bone stiffness at the metaphysis and stem geometry on the micromotion of the femoral stem relative to the femur. The VerSys (straight) and ABG (anatomic) femoral stems were enrolled in this finite element study to determine the performance of prosthetic micromotion. The simulated load to the hip joint during heel strike was assigned. Results showed that the VerSys model represented better resistance in micromotion between the bone/stem interface than the ABG model in either normal or poor cancellous bone stiffness at the metaphysis. The bone quality at the metaphysis of patients with nontraumatic AVN should be considered prior to selecting a femoral stem. In consideration of initial stability, acementless, straight stem that fits the isthmus is more favourable than an anatomic stem that is fixed to the proximal area of the canal.
机译:非创伤性股骨头缺血性坏死(AVN)患者干meta端骨矿物质密度的降低被认为是导致无菌性股骨组件松弛的主要因素。研究人员假设,在非创伤性AVN患者中,固定在干less端近端的非骨水泥解剖茎比固定在干physi端的直茎具有更高的无菌性松动风险。本研究的目的是评估干meta端的干骨刚度和茎的几何形状对股骨干相对于股骨微动的影响。该有限元研究纳入了VerSys(直形)和ABG(解剖)股骨柄,以确定假体微运动的性能。分配了脚跟撞击期间髋关节的模拟负载。结果显示,在干or端正常或较弱的松质骨刚度方面,VerSys模型表现出比ABG模型更好的抵抗骨/干界面之间微运动的能力。在选择股骨干之前,应考虑非创伤性AVN患者干meta端的骨质。考虑到初始稳定性,适合于峡部的无结节直茎比固定于根管近端的解剖茎更有利。

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