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Improving fixation strength of pedicle screw by microarc oxidation treatment: An experimental study of osteoporotic spine in sheep

机译:微弧氧化处理提高椎弓根螺钉的固定强度:绵羊骨质疏松性脊柱的实验研究

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摘要

Failure of fixation caused by loosening of pedicle screws in osteoporosis is a problem in spinal surgery. We compared the in vivo fixation strength between pedicle screws treated with microarc oxidation (MAO) and untreated screws in an osteoporotic model of ovariectomized sheep. The MAO treated and untreated screws were placed in lumbar vertebral bodies. After 3 months of implantation, biomechanical tests, micro-CT analysis, and histological observations were conducted to examine the performance of the two groups. At time 0, no significant difference was found between the two groups in biomechanical tests (p>0.05); 3 months later, higher pull-out strength and load with less displacement were detected in the MAO-treated group (p<0.05). Micro-CT analysis showed that the tissue mineral density, bone volume fraction, trabecular thickness, and trabecular number in the MAO-treated group were all higher than those in untreated group (p<0.05), and trabecular spacing was smaller (p<0.05). Histologically, the bone-implant interface in the MAO-treated group was better than that in untreated group (p<0.05). In conclusion, pedicle screws with a bioactive surface treated by MAO can improve screw fixation strength in osteoporotic spines in sheep.
机译:在骨质疏松症中由椎弓根螺钉松动引起的固定失败是脊柱外科手术中的问题。我们比较了在卵巢切除的绵羊的骨质疏松模型中,用微弧氧化(MAO)处理的椎弓根螺钉与未经处理的螺钉之间的体内固定强度。将经过MAO处理和未处理的螺钉放置在腰椎椎体中。植入3个月后,进行了生物力学测试,显微CT分析和组织学观察以检查两组的性能。在时间0,两组在生物力学测试中没有发现显着差异(p> 0.05); 3个月后,在MAO治疗组中检测到较高的拉出强度和负荷,位移较小(p <0.05)。 Micro-CT分析显示,MAO治疗组的组织矿物质密度,骨体积分数,小梁厚度和小梁数目均高于未治疗组(p <0.05),小梁间距较小(p <0.05) )。从组织学上看,MAO治疗组的骨-植入界面好于未治疗组(p <0.05)。总之,经MAO处理的具有生物活性表面的椎弓根螺钉可以提高绵羊骨质疏松棘的螺钉固定强度。

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