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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Investigation of relative micromotion at the stem-cement interface in total hip replacement
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Investigation of relative micromotion at the stem-cement interface in total hip replacement

机译:全髋关节置换中茎-水泥界面相对微动的研究

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摘要

Cemented total hip replacement has become a standard surgical technique to treat patients with osteoarthritis and osteonecrosis. The stem-cement interface experiences fretting wear in vivo due to low-amplitude oscillatory micromotion under physiological loading, and this wear is currently becoming important as a potential mechanism for the overall wear of cemented total hip replacements. However, the relative micromotion at the stem-cement interface has not been widely reported. In the present study, a new micromotion sensor is developed that is based on the deformation of a strain gauge, and this sensor is used to probe the migration of a polished Exeter stem within a Simplex P cement mantle through an in vitro wear simulation. It is demonstrated that the stem migration value generally increases with an increase in the number of loading cycles, with a gradual decrease of migration rate. Additionally, fretting wear is successfully replicated on the stem surface, and the micropores in the cement surface are considered to contribute to initiation and propagation of the fretting damage on the stem. This is confirmed by the observation that no evidence of fretting wear is detected on the stem where the surface is in contact with the pore-free areas on the cement. This study allows a deep insight into the micromotion at the stem-cement interface, and provides evidence highlighting the significance of the micropores in the cement surface in the generation of fretting wear on a polished femoral stem.
机译:骨水泥置换术已成为治疗骨关节炎和骨坏死患者的标准手术技术。由于在生理负荷下低振幅的振荡微运动,干-骨水泥界面在体内会产生微动磨损,并且这种磨损作为固定骨质全髋关节置换物整体磨损的潜在机制目前正变得越来越重要。然而,尚未广泛报道茎-水泥界面的相对微动。在本研究中,基于应变仪的变形,开发了一种新的微动传感器,该传感器用于通过体外磨损模拟来探测抛光的埃克塞特杆在Simplex P水泥地幔中的迁移。结果表明,茎的迁移值通常随着装载循环数的增加而增加,而迁移率逐渐降低。此外,微动磨损成功地复制到了杆的表面上,并且水泥表面的微孔被认为有助于微动损伤在杆上的产生和传播。观察结果证实了这一点,即在表面与水泥上无孔区域接触的杆上未发现微动磨损的迹象。这项研究可以深入了解茎-水泥界面处的微动,并提供证据突出水泥表面微孔在抛光的股骨柄上产生微动磨损的重要性。

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