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Experimental tests on new titanium alloy interbody cervical cages

机译:新钛合金椎体颈笼的实验试验

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Degenerative diseases of the spine, when not solvable with clinical treatments or with suitable stabilization systems, can be cured by means of the technique of arthrodesis through the interbody fusion of two or more vertebrae. The paper deals with the tests carried out on commercial and innovative cervical cages, used in the primary stabilization of the vertebrae, able to maintain the right distance and to assure the interbody fusion. Additive manufacturing (AM) is a powerful new tool offering the necessary competitiveness to the biomedical manufacturing companies, having the possibility to create materials with controlled porosity combined with solid parts, providing to the workpiece excellent capacity in the subsequent phases of osseointegration. Based on the knowledge developed either in the biomechanics of the spine or in the properties of biocompatibility and osseointegration of titanium alloys, MT Ortho has developed some models of cervical cage made from modern additive printing techniques with titanium alloy. Three different cervical cage made of different materials were subjected to static compression test: a commercial cervical intervertebral cage in PEEK and two cervical intervertebral cages in Ti alloy produced by the EBM process by MT Ortho. Tests on the innovative cage produced by EBM have shown encouraging results. From this first preliminary analysis its showed that the mechanical and functional failure of the innovative devices made in melted Ti alloy by EBM is achieved by load values greater than physiological ones of the cervical spine.
机译:脊柱,当与临床治疗不可解或与合适的稳定系统的退行性疾病,可以通过关节固定术的通过两个或多个椎骨的椎体间融合的技术来固化。与商业上的和创新宫颈笼中进行的试验中,在椎骨的第一稳定使用的,能保持正确的距离,并且以确保体内融合纸张交易。添加剂制造(AM)是一个强大的新工具,提供了必要的竞争力,生物医药制造企业,不必创建具有受控孔隙率与固体部分组合材料的可能性,提供到在骨整合的后续阶段的工件优异的容量。基于在脊柱生物力学或生物相容性和钛合金的骨整合的性能无论是开发知识,MT奥托开发了从钛合金现代叠加式印刷技术制成的宫颈笼的某些型号。由不同材料制成的三个不同的宫颈笼进行静态压缩试验:PEEK由MT邻的EBM方法生产的商业颈椎椎间融合器和两个颈椎间盘笼中的Ti合金。通过EBM产生对创新的笼的测试显示令人鼓舞的结果。从该第一初步分析其表明,通过在EBM熔化Ti合金制成的创新设备的机械和功能故障是由负荷值比颈椎的生理那些更大的实现。

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