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The influence of cementing technique in hip resurfacing arthroplasty on the initial stability of the femoral component.

机译:髋关节表面置换术中固井技术对股骨组件初始稳定性的影响。

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PURPOSE: In clinical and retrieval analyses, over-penetration of cement, incomplete seating of the prosthesis with a resultant polar cement mass, or both, have been associated with early femoral failures of resurfacing arthroplasties. We used human bone specimens to experimentally compare the initial stability of different cementing techniques. METHODS: Twenty-six pairs of fresh frozen femora were prepared for resurfacing using original instruments (DePuy ASR). ASR femoral resurfacing prostheses were implanted using two different cementing techniques: (1) component filling and (2) cement applicator. Real-time measurements of pressure and temperature during implantation, analyses of cement penetration and micro motions under torque application were performed. RESULTS: Applicator use reduced significantly the cement penetration depth (9.2 mm vs 5.3 mm with the applicator, p = 0.001), polar mantle (8.1 mm vs 2.6 mm, p = 0.008), cement defects (3.7 mm vs 0.1 mm, p = 0.008) and interface temperatures (40.3 degrees C vs 33.1 degrees C, p < 0.001 ). Initial rotational stability showed statistically significant less extreme values with the cement applicator technique (range 3.4-51.7 m degrees /Nm, 11.0-29.7 m degrees /Nm, p = 0.024). CONCLUSIONS: The cement applicator technique significantly reduces cement defects, incomplete seating, over-penetration and interface temperatures with a more consistent initial stability of the ASR femoral resurfacing prostheses.
机译:目的:在临床和取材分析中,骨水泥的过度渗透,假体的不完全就位以及由此产生的极性骨水泥团,或两者兼有,与股骨表面置换术早期股骨功能衰竭有关。我们使用人体骨骼标本通过实验比较了不同固井技术的初始稳定性。方法:准备使用原始器械(DePuy ASR)重铺二十六对新鲜冷冻股骨。使用两种不同的粘接技术植入ASR股骨表面修复假体:(1)填充组件和(2)粘接器。进行了植入过程中压力和温度的实时测量,在施加扭矩的情况下进行了水泥渗透和微观运动的分析。结果:使用喷头可显着降低水泥渗透深度(9.2毫米比5.3毫米,使用喷头,p = 0.001),极地幔(8.1毫米比2.6毫米,p = 0.008),水泥缺陷(3.7毫米比0.1毫米,p = 0.008)和界面温度(40.3摄氏度vs 33.1摄氏度,p <0.001)。最初的旋转稳定性在水泥涂抹器技术上显示出极显着的极小值(在3.4-51.7 m度/Nm,11.0-29.7 m度/ Nm,p = 0.024)。结论:水泥涂抹器技术可显着减少水泥缺陷,不完全固定,过度渗透和界面温度,并具有更一致的ASR股骨表面修复假体初始稳定性。

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