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Femoral cementing techniques in total hip replacement.

机译:全髋关节置换中的股骨水泥固定技术。

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Clinical studies have shown that second-generation femoral cementing techniques at total hip replacement result in a superior fixation of the femoral stem. In an effort to determine what benefits further developments in cementing techniques would provide, we compared the morphology of the cement mantles produced by traditional finger-packing and gun-insertion techniques. The porosity of the cement mantles was quantified using computerised image analysis. The finger-packing technique caused large air inclusions that resulted in large pores in the substance of the cement mantle, whereas the cement-gun technique did not result in any individual pore with an equivalent diameter greater than 3 mm. The mean porosity of cement mantles prepared using the finger-insertion technique was 8.3%, whereas the mean porosity in gun-prepared mantles was 1.7%. The use of a cement gun significantly reduced the porosity of femoral cement mantles (P = 0.02). Reduction of defects in the substance of the cement mantle may account for the increased survival of femoral prostheses inserted when second-generation techniques were used. Further reduction of the porosity of the cement mantle could not be expected to produce as dramatic a clinical improvement in prosthesis fixation.
机译:临床研究表明,在全髋关节置换术中使用第二代股骨骨水泥固定技术可以使股骨干得到更好的固定。为了确定固井技术的进一步发展将带来什么好处,我们比较了传统的指压填充和喷枪插入技术生产的水泥地幔的形态。水泥地幔的孔隙度通过计算机图像分析进行定量。指压堆积技术会产生大量的空气夹杂物,从而在水泥地幔物质中形成大孔隙,而水泥枪技术则不会导致等效直径大于3毫米的任何单个孔隙。用手指插入技术制备的水泥地幔的平均孔隙度为8.3%,而用枪制备的地幔的平均孔隙度为1.7%。使用水泥枪可显着降低股骨水泥套的孔隙率(P = 0.02)。当使用第二代技术时,减少水泥套物质中的缺陷可以解释增加的股骨假体的存活率。不能期望水泥套孔隙率的进一步降低在假体固定方面产生显着的临床改善。

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