首页> 外文期刊>International journal of nano and biomaterials >Influence of a novel radiopacifier (nano-sized strontia particles) on in vitro properties of a PMMA bone cement for use in total joint replacements
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Influence of a novel radiopacifier (nano-sized strontia particles) on in vitro properties of a PMMA bone cement for use in total joint replacements

机译:新型放射乳头(纳米级锶粒子)对全关节置换用PMMA骨水泥体外性能的影响

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摘要

In literature reports on strontia-containing PMMA bone cements, the strontia was combined with another material, micron-sized particles were used and in vitro fatigue data are sparse. The present report is on the in vitro characterisation of a strontia-containing PMMA bone cement in which nano-sized strontia particles that were not combined with any other material were used (NANOSRO cement). Compared to the control cement (a commercially-based cement brand with the same composition as that of NANOSRO cement, except that the radiopacifier was BaSO4), NANOSRO cement had significantly higher radiopacity, lower polymerisation rate at 37°C and longer fatigue life. With regard to setting time, maximum exotherm temperature and compressive strength, the values for both cements were within the limits stipulated in the relevant testing standards. These results suggest that NANOSRO cement has promise for use in anchoring total joint replacements and, therefore, should be studied further.
机译:在有关含锶的PMMA骨水泥的文献报道中,将锶与另一种材料结合在一起,使用了微米级的颗粒,并且体外疲劳数据稀疏。本报告是关于含锶的PMMA骨水泥的体外表征,其中使用了未与任何其他材料结合的纳米级锶粒子(NANOSRO水泥)。与对照水泥相比(NANOSRO水泥的成分与NANOSRO水泥相同,只是不透射线的是BaSO4,与NANOSRO水泥具有相同的成分),与之相比,NANOSRO水泥具有更高的射线不透性,在37°C下较低的聚合速率和更长的疲劳寿命。关于凝结时间,最高放热温度和抗压强度,两种水泥的值均在相关测试标准规定的范围内。这些结果表明,NANOSRO水泥有望用于锚固全关节置换,因此应进一步研究。

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