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Evaluation of healing performance of biodegradable composite bone plates for a simulated fractured tibia model by finite element analysis

机译:通过有限元分析评估模拟胫骨骨折模型中生物可降解复合骨板的愈合性能

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The fixation of fractured bones using bone plates is a popular method for healing long-bone fractures. Flexible implants have attracted attention owing to their high potential for healing bone fractures. In this study, we considered the use of various composite materials such as a flexible phosphate glass fiber/poly-lactic acid (biodegradable) composite and a carbon/epoxy (WSN3k (non-degradable)) composite for bone plates and estimated the healing performances of bone plates made of said materials by applying them to fractures with gaps of 1-10 mm and oblique angles of 0-35°. The effect of degradation rate on the materials' healing performance was analyzed using ABAQ.US 6.10, a software application based on a mechano-regulation algorithm that employs deviatoric strain as a mechanical stimulus. The results showed that the biodegradable composite bone plates had considerably better healing performance. In addition, the most appropriate degradation rates for obtaining the best healing performance for specific bone fracture configurations have been suggested.
机译:使用骨板固定骨折的骨头是治愈长骨骨折的一种流行方法。柔性植入物由于其治愈骨折的高潜力而备受关注。在这项研究中,我们考虑了使用各种复合材料,例如柔性磷酸盐玻璃纤维/聚乳酸(可生物降解)复合材料和碳/环氧(WSN3k(不可降解))复合材料来骨板,并评估了其愈合性能通过将这些材料制成的骨板应用到缝隙为1-10 mm,倾斜角为0-35°的骨折中来治疗。使用ABAQ.US 6.10分析了降解速率对材料愈合性能的影响,ABAQ.US 6.10是一种基于机械调节算法的软件应用,该算法采用偏向应变作为机械刺激。结果表明,可生物降解的复合骨板具有明显更好的愈合性能。另外,已经提出了针对特定骨折构造获得最佳愈合性能的最适当降解速率。

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