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Experimental and Computational Approach Investigating Burst Fracture Augmentation Using PMMA and Calcium Phosphate Cements

机译:实验和计算方法研究使用PMMA和磷酸钙水泥的爆裂骨折的隆起

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摘要

The aim of the study was to use a computational and experimental approach to evaluate, compare and predict the ability of calcium phosphate (CaP) and poly (methyl methacrylate) (PMMA) augmentation cements to restore mechanical stability to traumatically fractured vertebrae, following a vertebroplasty procedure. Traumatic fractures (n = 17) were generated in a series of porcine vertebrae using a drop-weight method. The fractured vertebrae were imaged using μCT and tested under axial compression. Twelve of the fractured vertebrae were randomly selected to undergo a vertebroplasty procedure using either a PMMA (n = 6) or a CaP cement variation (n = 6). The specimens were imaged using μCT and re-tested. Finite element models of the fractured and augmented vertebrae were generated from the μCT data and used to compare the effect of fracture void fill with augmented specimen stiffness. Significant increases (p < 0.05) in failure load were found for both of the augmented specimen groups compared to the fractured group. The experimental and computational results indicated that neither the CaP cement nor PMMA cement could completely restore the vertebral mechanical behavior to the intact level. The effectiveness of the procedure appeared to be more influenced by the volume of fracture filled rather than by the mechanical properties of the cement itself.
机译:这项研究的目的是使用一种计算和实验方法来评估,比较和预测磷酸钙(CaP)和聚(甲基丙烯酸甲酯)(PMMA)增强水泥在椎骨成形术后恢复创伤性椎骨的机械稳定性的能力。程序。使用滴重法在一系列猪椎骨中产生外伤性骨折(n = 17)。使用μCT对骨折的椎骨进行成像,并在轴向压缩下进行测试。使用PMMA(n = 6)或CaP水泥变形(n = 6)随机选择十二个骨折椎骨进行椎体成形术。使用μCT对标本成像并重新测试。从μCT数据生成了骨折和椎体增大的有限元模型,并将其用于比较骨折空隙填充与标本刚度增大的影响。与骨折组相比,两个增强标本组的破坏载荷均显着增加(p <0.05)。实验和计算结果表明,CaP骨水泥和PMMA骨水泥均不能完全恢复椎体的力学性能。该程序的有效性似乎更多地受裂缝填充量的影响,而不是受水泥本身的机械性能的影响。

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