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Effects of pre-cooling and pre-heating procedures on cement polymerization and thermal osteonecrosis in cemented hip replacements.

机译:预冷和预热程序对水泥骨替代物中水泥聚合和热性骨坏死的影响。

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摘要

Numerical studies were performed to investigate bone cement polymerization, temperature history and thermal osteonecrosis in cemented hip replacements with finite element methods. In this paper, the effects of pre-cooling and pre-heating of the prosthesis and/or the cement prior to implantation were simulated. It was found that the cement polymerization initiated near the bone-cement interface and progressed toward the prosthesis when both the cement and prosthesis were initially at room temperature. When the prosthesis and/or cement were pre-cooled, a reduction of the peak temperature at the bone-cement interface resulted, and this may reduce thermal osteonecrosis. However, this also slowed the polymerization process, and may result in a weaker bone cement. If the prosthesis was significantly initially heated, bone cement polymerization reversed reaction direction, started from the cement-prosthesis interface and proceeded toward the bone. Such polymerization direction may reduce or eliminate the formation of voids at the cement-prosthesis interface. Numerical results also showed that pre-heating seemed unlikely to produce significant thermal damage to the bone. The method of pre-heating the prosthesis prior to implantation may decrease the likelihood of cement-prosthesis loosening and increase the life of total hip arthroplasty.
机译:用有限元方法进行了数值研究,以研究骨水泥髋关节置换中的骨水泥聚合,温度历史和热坏死。在本文中,模拟了植入前假体和/或骨水泥的预冷和预热效果。发现当骨水泥和假体最初都在室温下时,骨水泥聚合在骨-水泥界面附近开始并向假体发展。当对假体和/或骨水泥进行预冷却时,会导致骨水泥界面处的峰值温度降低,这可能会减少热性骨坏死。但是,这也减慢了聚合过程,并可能导致较弱的骨水泥。如果假体最初被显着加热,则骨水泥的聚合反应会逆转反应方向,从假体与假体的界面开始,并朝着骨骼前进。这样的聚合方向可以减少或消除在水泥-假体界面处的空隙的形成。数值结果还表明,预热似乎不太可能对骨骼产生明显的热损伤。在植入前对假体进行预热的方法可以减少骨水泥假体松动的可能性,并增加全髋关节置换术的寿命。

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