首页> 外文期刊>American Journal of Kidney Diseases: The official journal of the National Kidney Foundation >External validation of the BIS (Berlin Initiative Study)-1 GFR estimating equation in the elderly
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External validation of the BIS (Berlin Initiative Study)-1 GFR estimating equation in the elderly

机译:BIS(柏林倡议研究)-1 GFR估计方程的外部验证

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摘要

Surgeons often use spinal fixators to manage spinal instability. Dynesys (DY) is a type of dynamic fixator that is designed to restore spinal stability and to provide flexibility. The aim of this study was to design a new spinal fixator using topology optimization [the topology design (TD) system]. Here, we constructed finite element (FE) models of degenerative disc disease, DY, and the TD system. A hybrid-controlled analysis was applied to each of the three FE models. The rod structure of the topology optimization was modelled at a 39 % reduced volume compared with the rigid rod. The TD system was similar to the DY system in terms of stiffness. In contrast, the TD system reduced the cranial adjacent disc stress and facet contact force at the adjacent level. The TD system also reduced pedicle screw stresses in flexion, extension, and lateral bending.
机译:外科医生通常使用脊柱固定器来控制脊柱不稳。 Dynesys(DY)是一种动态固定器,旨在恢复脊柱稳定性并提供灵活性。这项研究的目的是使用拓扑优化[拓扑设计(TD)系统]设计一种新的脊柱固定器。在这里,我们构建了退变性椎间盘疾病,DY和TD系统的有限元(FE)模型。将混合控制分析应用于三个有限元模型的每一个。与刚性杆相比,拓扑优化的杆结构以减少39%的体积建模。 TD系统在刚性方面类似于DY系统。相反,TD系统可降低颅骨邻近椎间盘应力和邻近水平的小平面接触力。 TD系统还减少了椎弓根螺钉在屈曲,伸展和横向弯曲中的应力。

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