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In vitro comparison of the effects of rough and polished stem surface finish on pressure generation in cemented hip arthroplasty

机译:骨水泥髋关节置换术中粗糙和抛光杆表面光洁度对压力产生的影响的体外比较

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摘要

>Background and purpose High pressures around implants can cause bone lysis and loosening. We investigated how pressures are generated around cemented femoral stems.>Method We compared the pressures generated by rough and polished tapered stems at their cement interfaces, in an in vitro model, before and after 1 million load cycles.>Results At the start of the study, the loading of both polished and rough stems generated interface pressures that were not statistically significantly different. After 1 million load cycles, the rough stems generated greater interface pressures than at the start (p = 0.03), with maximum pressure wave amplitudes of 450,000 Pa or 3,375 mm Hg. The pressures generated by polished stems were similar before and after 1 million load cycles, and were lower than the pressures generated by the rough stems (p = 0.01). Stem loading caused micromotion between the stem and cement. Polished stems migrated distally in the cement but retained rotational and axial stability. The rough stems also migrated distally and wore the cement mantle, leading to increased rotational instability.>Interpretation The change in the rotational micromotion of the rough stem is likely to be the principal cause of the increased stem pump output and to be a key factor in the longevity of cemented femoral implants.
机译:>背景和目的:植入物周围的高压会导致骨溶解和松弛。我们研究了骨水泥骨干周围压力的产生方式。>方法我们在体外模型中,对一百万个载荷循环前后的粗糙和抛光锥形骨干在其水泥界面处产生的压力进行了比较。 strong>结果:在研究开始时,抛光杆和粗糙杆的载荷产生的界面压力在统计学上没有显着差异。经过一百万次负载循环后,粗杆产生的界面压力比开始时要大(p = 0.03),最大压力波幅值为450,000 Pa或3,375 mm Hg。在进行一百万次负载循环之前和之后,抛光杆产生的压力相似,并且低于粗杆产生的压力(p = 0.01)。阀杆加载导致阀杆和水泥之间的微动。抛光后的茎在水泥中向远侧迁移,但保持了旋转和轴向稳定性。粗杆也向远侧迁移并戴着水泥地幔,导致旋转不稳定性增加。>解释粗杆旋转微运动的变化可能是导致杆泵输出功率增加和增加的主要原因。成为骨水泥植入物使用寿命长的关键因素。

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