首页> 外文会议>8th World Multi-Conference on Systemics, Cybernetics and Informatics(SCI 2004) vol.15: Post-Conference Issue >A New Approach for Designing Biodegradable Bone Tissue Augmentation Devices by Using Degradation Topology Optimization
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A New Approach for Designing Biodegradable Bone Tissue Augmentation Devices by Using Degradation Topology Optimization

机译:利用降解拓扑优化设计可生物降解骨组织增强装置的新方法

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The current study proposed a topology optimization method accounting for base material degradation and create a degradable device that retains sufficient stiffness through the degradation process to provide load bearings for tissue regeneration in orthopaedic applications. Degradable materials are less stiff than permanent materials and suffer further stiffness reduction through time when considering those as substitutes to replace permanent materials for many reconstruction applications. Merely replacing the permanent material with a degradable material in the same design may lead to early device failure. Since many degradable materials lose material through bulk erosion without shape change, the proposed optimization method creates a density distribution map for selected time points during degradation. These different density distributions are then linearly superposed using both time and degraded base stiffness weighting factors. In this paper, the method is applied to design a degradable spine interbody fusion cage device from polypropylene fumarate)/beta-tricalcium phosphate (PPF/β-TCP). The weighted optimization study successfully produced designs that maintained device stiffness better than either non-weighted or conventional designs. Any bulk degrading material can be designed using this process for any skeletal reconstruction application.
机译:当前的研究提出了一种拓扑优化方法,该方法考虑了基础材料的降解并创建了可降解的设备,该设备在降解过程中保持了足够的刚度,从而为骨科应用中的组织再生提供了承重能力。当考虑将可降解材料作为替代永久材料替代许多重建应用时,可降解材料的硬度不如永久材料,并且随着时间的推移,其刚度会进一步降低。在同一设计中仅将永久性材料替换为可降解材料可能会导致早期的设备故障。由于许多可降解材料会通过整体腐蚀而损失材料而不会发生形状变化,因此,所提出的优化方法会在降解过程中为选定的时间点创建密度分布图。然后使用时间和退化的基础刚度加权因子将这些不同的密度分布线性叠加。本文将该方法应用于由富马酸聚丙烯酸酯/β-磷酸三钙(PPF /β-TCP)设计的可降解脊柱椎间融合器。加权优化研究成功地产生了保持设备刚度好于非加权或常规设计的设计。可以使用此过程设计任何块状降解材料,以用于任何骨骼重建应用。

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