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Development of open-cell polyurethane-based bone surrogates for biomechanical testing of pedicle screws

机译:用于椎弓根螺钉的生物力学测试的开放式聚氨酯基骨代理的发展

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摘要

Artificial bones made of polyurethane are frequently used as an alternative to human bone for biomechanical testing. However, the biomechanical characteristics of these materials are often not validated against those of human bones. Thus, synthetic bone surrogates reflecting procedure-specific biomechanical properties of human bones are necessary for reliable implant design and testing. The aim of this study was to evaluate novel custom made open- and close-cell bone surrogates through morphometry assessment and pedicle screw pullout tests as an alternative to human bone for biomechanical testing. Bone surrogates created from polyurethane resin, mineral fillers and varying amounts of blowing agent were customized to various densities. Pedicle screws were manually inserted and pullout tests with a feed rate of 1 mm/min were conducted until failure. Load and displacement curves were recorded and analyzed in terms of maximum pullout forces. The resulting pullout forces of open- (1437 +/- 665 N) and close-cell surrogates (951 +/- 578 N) showed comparable results to human bone (1417 +/- 812 N) used as a reference. Furthermore, structural morphometric parameters were in accordance with human vertebral cancellous bone. In conclusion, the customized bone surrogates provide a new opportunity to design and test pedicle screws and further study the relationship between biomechanical properties and apparent density of artificial spongy bone.
机译:用于聚氨酯制成的人造骨骼经常用作生物力学检测的人骨的替代品。然而,这些材料的生物力学特性通常不会对人体骨骼的那些验证。因此,对可靠的植入物设计和测试来说,需要反映人骨的方法特异性生物力学性质的合成骨代理。本研究的目的是通过形态测量评估和椎弓根螺钉拔展试验评估新的定制开放和亲密的细胞骨代理,作为生物力学测试的人骨的替代品。从聚氨酯树脂,矿物填料和不同量的发泡剂产生的骨代理定制于各种密度。手动插入椎弓根螺钉,并进行具有1mm / min的进料速率的拉出试验直至发生故障。在最大拉伸力方面记录和分析负载和位移曲线。所得到的α(1437 +/- 665n)和近亲替代物(951 +/- 578n)的所得到的拉伸力显示出与作为参考的人骨(1417 +/- 812 n)的可比结果。此外,结构形态学参数符合人椎体松散骨。总之,定制的骨代理提供了设计和测试椎弓根螺钉的新机会,进一步研究了生物力学特性与人造海绵骨表观密度的关系。

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