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Biomechanics and numerical evaluation of cervical porcine models considering compressive loads using 2-D classic computer tomography CT, 3-D scanner and 3-D Computed Tomography

机译:使用2-D经典计算机断层扫描CT,3-D扫描仪和3-D计算压缩负荷考虑压缩负荷的颈椎猪模型的生物力学和数值评价

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In this paper the biomechanical behavior and numerical evaluation results of three C3-C5 porcine cervical models created with different modeling techniques are shown. The objective of this evaluation is to know the differences between the biomechanical effects on a bone graft, which replaces a damaged C4 vertebral body, a titanium alloy (Ti-6A1-4V) cervical plate, used to isolate the C4 damaged vertebra, and the influence on the compressive loads on the complete and instrumented C3-C5 cervical model. The biomechanical integrity of the healthy C3 and C5 vertebral body after the fixation of the cervical plate using titanium alloy screws is considered. Besides, 2-D Computer Tomography classic technique, 3-D Scanner Z-Corp 700 and a CT scanning Philips Brilliance system was used to create the three FEM models. In addition, 3-D Software as Pro-E Wildfire 4.0, ScanIP 3.1, UGS NX-4 and Geomagics R 10.0 was used to create specific numerical model. Main displacements and von Misses stresses between the upper and lower surfaces of the vertebral bodies and the bone graft and the influence of the titanium alloy (Ti-6A1-4V) screws on the vertebral body of C3 and C5 were evaluated. The contribution of this study is to optimize the actual surgical technique once the numerical results on the FEM model have been analyzed. In other words, the numerical disparity between classic CT techniques versus 3-D modern techniques is established.
机译:本文示出了采用不同建模技术创建的三种C3-C5猪宫颈模型的生物力学行为和数值评价结果。该评估的目的是了解骨移植物的生物力学效应之间的差异,该骨移植物取代了损伤的C4椎体,钛合金(Ti-6a1-4V)宫颈板,用于分离C4受损椎骨,以及对完整和仪表C3-C5宫颈模型对压缩载荷的影响。考虑了使用钛合金螺钉固定宫颈板后健康C3和C5椎体的生物力学完整性。此外,使用2-D电脑断层扫描经典技术,3-D扫描仪Z-CORP 700和CT扫描飞利浦Bryliance系统用于创建三个有限元素模型。此外,使用3-D软件作为Pro-E WildFire 4.0,Scanip 3.1,UGS NX-4和Geomagics R 10.0来创建特定的数值模型。主要位移和von错过椎体的上表面和下表面和骨移植物之间的应力,并评估C3和C5的椎体上的钛合金(Ti-6a1-4v)螺钉的影响。一旦分析了有限元模型的数值结果,本研究的贡献是优化实际的手术技术。换句话说,建立了经典CT技术与3-D现代技术之间的数值视差。

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