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Cement oscillation increases interlock strength at the cement-bone interface, with commentary.

机译:注释说明,水泥振动会增加水泥-骨界面的互锁强度。

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Modern cementing techniques aim to improve the interlock between bone and cement and to establish a durable interface. Cement penetration is generally believed to influence interface failure, but current methods for improving the cement-bone interface are inadequate. Oscillation is the reciprocated movement of an object through its balanced position, or the quantum physics of systematic fluctuation back and forth near an average value (or trimmed value). To increase the interlock strength at the cement-bone interface, we designed a cement oscillator according to the principles of vibrational mechanics. To evaluate the effect of oscillation on the quality of interlock strength at the cement-bone interface, we randomly divided 156 femoral bones of adult pigs into 2 groups, oscillated and control, and performed mechanical tests to assess interlock strength at the cement-bone interface. The filling effect of bone cement was observed and analyzed under a stereomicroscope, and then each oscillated femur was compared with a control femur. The interlock strength at the cement-bone interface in the oscillated group was significantly greater than in the control group (P<.05), and the filling effect in the oscillated group was also better than that in the control group (P<.05). Our findings show that oscillation of bone cement significantly increases interlock strength at the cement-bone interface, point the way for clinicians to develop a high-performance and pragmatic fixation technique for prostheses to increase interlock strength, and will be of considerable practical importance in helping to prevent aseptic loosening of cemented prostheses.
机译:现代固井技术旨在改善骨骼与固井之间的互锁并建立持久的界面。一般认为,水泥渗透会影响界面破坏,但是目前改善水泥骨界面的方法还不够。振荡是物体通过其平衡位置的往复运动,或者是在平均值(或修整值)附近来回系统波动的量子物理学。为了增加水泥骨界面的互锁强度,我们根据振动力学原理设计了水泥振荡器。为了评估振荡对水泥骨界面联锁强度质量的影响,我们将成年猪的156股股骨随机分为两组,进行振荡和控制,并进行了力学测试以评估水泥骨界面的联锁强度。在立体显微镜下观察并分析骨水泥的填充效果,然后将每个振荡的股骨与对照股骨进行比较。振动组水泥骨界面的联锁强度明显高于对照组(P <.05),振动组的充盈效果也优于对照组(P <.05)。 )。我们的研究结果表明,骨水泥的振荡显着增加了骨水泥界面处的互锁强度,为临床医生开发一种高性能且实用的假体固定技术以增加互锁强度指明了道路,并且在帮助中具有重要的实践意义。以防止水泥假体的无菌松动。

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