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Three-Dimensional Finite Element Modeling for Biomaterial Selection and Shape Design of the Nucleus Prosthesis

机译:核假体的生物材料选择和形状设计三维有限元模拟

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Nucleus prosthesis replacement is considered as an ideal solution to low back pain. The purpose of this paper is to predict the suitable material properties and shape for the nucleus prosthesis of Chinese people based on biomechanical analysis using three-dimensional (3D) finite element (FE) method combined with experiments. The results suggest that a pillow-shaped nucleus prosthesis made of the polymer biomaterial with a Young's modulus of 0.1-100 MPa is qualified to replace the degenerated nucleus. Then under the guidance of the FE predictions, a novel nucleus replacement material of polyvinyl alcohol hydrogel was prepared; the mechanical experiment shows that it has a compressive modulus of 1.0-6.8 MPa over a strain range of 10-60 percent. The finite clement predictions and experimental results have implications for the nucleus prosthesis designs.
机译:细胞核假体替代被认为是腰痛的理想解决方案。 本文的目的是通过三维(3D)有限元(Fe)方法与实验相结合的基于生物力学分析,预测中国人核假体的合适材料性质和形状。 结果表明,由杨氏模量为0.1-100MPa的聚合物生物材料制成的枕形核假体有鉴定替代退化的细胞核。 然后在Fe预测的指导下,制备了一种新的聚乙烯醇水凝胶的细胞核替代材料; 机械实验表明,它的压缩模量为1.0-6.8MPa,应变范围为10-60%。 有限的Clement预测和实验结果对细胞核假体设计有影响。

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