首页> 外文期刊>Journal of biomechanical engineering. >Design of a Free-Floating Polycarbonate-Urethane Meniscal Implant Using Finite Element Modeling and Experimental Validation
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Design of a Free-Floating Polycarbonate-Urethane Meniscal Implant Using Finite Element Modeling and Experimental Validation

机译:自由浮动聚碳酸酯-聚氨酯半月板植入物的有限元建模和实验验证

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摘要

The development of a synthetic meniscal implant that does not require surgical attachment but still provides the biomechanical function necessary for joint preservation would have important advantages. We present a computational-experimental approach for the design optimization of a free-floating polycarbonateurethane (PCU) meniscal implant. Validated 3D finite element (FE) models of the knee and PCU-based implant were analyzed under physiological loads. The model was validated by comparing calculated pressures, determined from FE analysis to tibial plateau contact pressures measured in a cadaveric knee in vitro. Several models of the implant, some including embedded reinforcement fibers, were tested. An optimal implant configuration was then selected based on the ability to restore pressure distribution in the knee, manufacturability, and long-term safety. The optimal implant design entailed a PCU meniscus embedded with circumferential reinforcement made of polyethylene fibers. This selected design can be manufactured in various sizes, without risking its integrity under joint loads. Importantly, it produces an optimal pressure distribution, similar in shape and values to that of natural meniscus. We have shown that a fiber-reinforced, free-floating PCU meniscal implant can redistribute joint loads in a similar pattern to natural meniscus, without risking the integrity of the implant materials.
机译:合成半月板植入物的开发不需要外科手术附件,但仍提供关节保留所必需的生物力学功能,将具有重要的优势。我们提出了一种用于自由浮动聚碳酸酯聚氨酯(PCU)半月板植入物设计优化的计算实验方法。在生理负荷下分析了经过验证的膝关节和基于PCU的植入物的3D有限元(FE)模型。通过比较计算的压力(通过有限元分析确定的压力与体外在尸体膝盖中测量的胫骨平台接触压力)来验证模型。测试了几种植入物模型,其中包括嵌入的增强纤维。然后根据恢复膝部压力分布的能力,可制造性和长期安全性来选择最佳的植入物配置。最佳植入物设计需要将PCU弯月面嵌入由聚乙烯纤维制成的周向增强件。可以按各种尺寸制造此选定的设计,而不会在联合负载下冒其完整性的风险。重要的是,它可产生最佳的压力分布,其形状和值与天然弯月面相似。我们已经证明,纤维增强的,自由浮动的PCU半月板植入物可以以与自然弯月面类似的方式重新分配关节负荷,而不会冒着植入物材料完整性的危险。

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