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首页> 外文期刊>European spine journal >Posterior spinal instrumentation: biomechanical study on the role of rods on hardware response to axial load
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Posterior spinal instrumentation: biomechanical study on the role of rods on hardware response to axial load

机译:脊柱后路器械:杆对硬件对轴向载荷响应的作用的生物力学研究

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Posterior spinal instrumentation is frequently used for the treatment of spine disorders. Importantly, different requirements have to be considered for the optimal use of these systems in various clinical scenarios. In this work, we focused on the role of rods diameter on hardware’s stiffness. For this purpose, we established an in vitro model and compared the response to axial load of a posterior stabilization system, characterized by rods of different diameter (4, 5, 6?mm), with that of Dynesys?. Intuitively, the higher the stiffness of the hardware, the lower the load is transferred to the disc. However, the 4 hardware tested showed a different trend in the response to the load regimens: when increasing the load, more flexible systems display a progressive reduction in the percentage of load which is transferred to the disc while more rigid system display the opposite trend. Considering that the load which is transferred, and not by-passed by the hardware, influences the healing of a fracture; the integration of a bone graft or a cage; the fusion process, these data have a relevant impact on clinical practice and highlight features that have to be considered in the choice for the optimal posterior spinal instrumentation...
机译:脊柱后路器械常用于脊柱疾病的治疗。重要的是,必须考虑不同的要求,以在各种临床情况中最佳使用这些系统。在这项工作中,我们专注于杆直径对硬件刚度的作用。为此,我们建立了一个体外模型,并比较了以不同直径(4、5、6?mm)的棒为特征的后稳定系统与Dynesys™的轴向载荷的响应。直观地讲,硬件的刚度越高,传递到磁盘的负载越低。但是,所测试的4种硬件在对负载方案的响应中显示出不同的趋势:当增加负载时,更灵活的系统显示转移到磁盘的负载百分比逐渐降低,而更刚性的系统则显示相反的趋势。考虑到传递的载荷而不是由硬件绕开的载荷影响骨折的愈合;骨移植物或笼子的整合;在融合过程中,这些数据对临床实践具有重要影响,并突出了在选择最佳后路脊柱器械时必须考虑的特征...

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