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Rationale of a Test Setup with a Defined COR for Extra-Discal Motion-Preserving Implants with a Low Implant Stiffness

机译:具有定义核的测试设置的基本原理,用于具有低植入物刚度的常规运动保存植入物

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In the current version of ASTM F2624, the center of rotation (COR) is not specified. Potentially, each device can be tested using a different COR, which subsequently makes a direct design comparison of results difficult. Four posterior dynamic stabilization (PDS) devices (Dynesys, DYN, Zimmer; DSS, Paradigm Spine; and two Aesculap implant concepts) were tested in comparison to a rigid-fixation device and to the native situation of the lumbar spine on fresh-frozen human lumbar spines (L3-L5). The instrumented level was L4-L5. The PDS systems have axial compressive stiffness values ranging from 10 N/mm to 230 N/mm and were all made compatible to connect with the pedicle-screw system. The specimens were loaded in a spinal simulator, applying pure moments for flexion/extension, lateral bending and axial rotation (+/-7.5 Nm) with a defined velocity. The COR was analyzed based on the data measured with a 3-dimensional (3D) motion-analysis system. The effect of the PDS on the location of the COR is most pronounced in the sagittal plane. In general, the higher the implant stiffness, the more the COR shifted in a posterior direction. The DYN had a similar COR to the rigid fixator. However, the PDS systems with low axial compressive stiffness values (range: 10-70 N/mm) showed very similar results on CORs, which are located in the region of the posterior border of the intervertebral disc. In the frontal and transversal plane, the COR was found to be close to the native situation for each system. Therefore, for PDS devices with low implant stiffness, the location of the COR varies only marginally and can be specified for a test setup. An initial proposal that will allow side-by-side comparison for these kinds of PDS systems is given and the feasibility of the new test setup could be proven for all three loading conditions.
机译:在ASTM F2624的当前版本中,未指定旋转中心(COR)。潜在地,可以使用不同的COR测试每个设备,其随后使得能够难以实现结果的直接设计比较。四个后动态稳定(PDS)设备(Dynesys,DYN,齐默; DSS,范式脊柱;和两个蛇牌植入概念)相比进行了测试,一个刚性固定装置和腰椎上新鲜冷冻的人天然情况腰椎(L3-L5)。仪表水平为L4-L5。 PDS系统具有轴向压缩刚度值,范围为10 n / mm至230 n / mm,并且全部兼容以与椎弓根螺钉系统连接。将标本装入脊柱模拟器中,施加纯片,用于屈曲/延伸,横向弯曲和轴向旋转(+/- 7.5nm),具有限定的速度。基于用三维(3D)运动分析系统测量的数据进行分析COR。 PD对Cor的位置的影响在矢状平面上最为明显。通常,植入物刚度越高,沿后方越越多。 DYN对刚性固定器具有类似的圆形。然而,具有低轴向压缩刚度值的PDS系统(范围:10-70n / mm)显示出在椎间盘后侧边界区域中的CORS上非常相似的结果。在额外和横向平面中,发现COR被发现接近每个系统的本地情况。因此,对于具有低植入物刚度的PDS器件,COR的位置仅略微变化,并且可以为测试设置指定。给出了将允许对这些类型的PDS系统进行并排比较的初始提议,并且可以为所有三个装载条件证明新测试设置的可行性。

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