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远端柄几何形状对非骨水泥型翻修全髋关节假体界面运动的影响。

Effect of distal stem geometry on interface motion in uncemented revision total hip prostheses.

作者信息

Kirk Kevin L, Potter Benjamin K, Lehman Ronald A, Xenos John S

机构信息

Union Memorial Hospital, Baltimore, Maryland, USA.

出版信息

Am J Orthop (Belle Mead NJ). 2007 Oct;36(10):545-9.

Abstract

In this study, we compared differences in motion at the bone-prosthesis interface in femora in which a fluted, tapered, or cylindrical distal stem design had been implanted in a revision total hip arthroplasty model. Paired, fresh-frozen, cadaveric femora underwent resection of the proximal femur to simulate the proximal femoral bone loss often present during revision total hip arthroplasty and implantation with either a fluted, tapered stem or a clinically proven cylindrical stem. Specimens were then preloaded and subjected to a synchronous axial and torsional load with continuous monitoring of axial displacement and rotation. For the fluted, tapered stem, mean axial and rotational displacements were 13.33 microm and 9.81 microm, respectively, compared with 18.37 microm and 13.40 microm for the cylindrical stem (both Ps < .05). Therefore, the fluted, tapered stem design that was tested demonstrated superior initial biomechanical stability compared with that of the clinically proven cylindrical design tested. However, both stems demonstrated motion below the threshold necessary for bony ingrowth. Knowledge of the initial biomechanical properties of different stem designs may assist the revision joint surgeon in choosing the optimal prosthesis for implantation.

摘要

在本研究中,我们比较了在翻修全髋关节置换模型中植入有槽、锥形或圆柱形远端柄设计的股骨假体-骨界面处的运动差异。配对的新鲜冷冻尸体股骨进行近端股骨切除,以模拟翻修全髋关节置换时常见的近端股骨骨丢失,并植入有槽、锥形柄或经临床验证的圆柱形柄。然后对标本进行预加载,并施加同步轴向和扭转载荷,同时持续监测轴向位移和旋转。对于有槽锥形柄,平均轴向和旋转位移分别为13.33微米和9.81微米,而圆柱形柄分别为18.37微米和13.40微米(P值均<0.05)。因此,与经临床验证的圆柱形设计相比,所测试的有槽锥形柄设计显示出更好的初始生物力学稳定性。然而,两种柄在骨长入所需阈值以下均显示出运动。了解不同柄设计的初始生物力学特性可能有助于翻修关节外科医生选择最佳的植入假体。

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