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Biomechanical evaluation of the primary stability of pedicle screws after augmentation with an innovative bone stabilizing system

机译:使用创新的骨稳定系统增强后椎弓根螺钉主要稳定性的生物力学评估

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Introduction: In today's aging population, diminished bone quality often affects the outcome of surgical treatment. This occurs especially when surgical implants must be fixed to bone, as it occurs when lumbar fusion is performed with pedicle screws. Besides Polymethylmethacrylate (PMMA) injection, several techniques have been developed to augment pedicle screws. The aim of the current study was to evaluate the primary stability of an innovative system (IlluminOss?) for the augmentation of pedicle screws in an experimental cadaveric setup. IlluminOss? is an innovative technology featuring cement with similar biochemical characteristics to aluminum-free glass-polyalkenoate cement (GPC). Materials and methods: IlluminOss? was inserted transpedicularly via a balloon/catheter system in 40 human cadaveric lumbar vertebrae. For comparability, each vertebra was treated bilaterally with pedicle screws, augmented and non-augmented. The maximum failure load during pull out test was documented by a universal material testing machine. Results: The results showed significantly higher failure loads for the augmented pedicle screws (Median 555.0 ± 261.0 N, Min. 220.0 N, Max. 1,500.0 N), compared to the native screws (Median 325.0 ± 312.1 N, Min. 29.0 N, Max. 1,400.0 N). Conclusions: Based on these data, we conclude the IlluminOss? system can be used to augment primary screw stability regarding axial traction, compared to native screws. The IlluminOss? monomer offers ease of control for use in biological tissues. In contrast to PMMA, no relevant heat is generated during the hardening process and there is no risk of embolism. Further studies are necessary to evaluate the usefulness of the IlluminOss? system in the in vivo augmentation of pedicle screws in the future.
机译:简介:在当今人口老龄化的情况下,骨质下降往往会影响手术治疗的结果。当外科植入物必须固定在骨骼上时,尤其会发生这种情况,因为当使用椎弓根螺钉进行腰椎融合术时会发生这种情况。除了聚甲基丙烯酸甲酯 (PMMA) 注射液外,还开发了几种技术来增强椎弓根螺钉。本研究的目的是评估用于在实验尸体设置中增强椎弓根螺钉的创新系统 (IlluminOss?) 的主要稳定性。IlluminOss?是一种创新技术,其特点是水泥具有与无铝玻璃聚烯酸酯水泥(GPC)相似的生化特性。材料和方法:IlluminOss?通过球囊/导管系统经椎弓根插入 40 例人类尸体腰椎。为了进行比较,每个椎骨都用椎弓根螺钉进行双侧治疗,增强和非增强。拉拔试验期间的最大失效载荷由万能材料试验机记录。结果:结果显示,与原生螺钉(中位数 325.0 ± 312.1 N,最小 29.0 N,最大 1,400.0 N)相比,增强椎弓根螺钉(中位数 555.0 ± 261.0 N,最小值 220.0 N,最大值 1,500.0 N)的失效载荷显著更高。结论:基于这些数据,我们得出结论 IlluminOss?与原生螺钉相比,系统可用于增强主螺钉在轴向牵引方面的稳定性。The IlluminOss?单体易于控制,可用于生物组织。与PMMA相比,在硬化过程中不会产生相关的热量,也没有栓塞的风险。有必要进一步研究来评估 IlluminOss 的有用性?未来椎弓根螺钉的体内增强系统。

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