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Evaluation of the development of tissue phenotypes: Bone fracture healing using functionally graded material composite bone plates

机译:组织表型发展的评估:使用功能梯度材料复合材料骨板治疗骨骨折

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摘要

Long bone fractures are conventionally treated using metallic implants that may be accompanied by complications such as stress shielding, corrosion, poor fatigue life, and loosening. Flexible fixations by reducing the structural stiffness of prostheses or using low modulus materials are promising alternatives to overcome these problems. In this study, different configurations of bone plates developed from functionally graded material (FGM) composites were considered to investigate the effect of bending stiffness on bone fracture healing while maintaining an equivalent bone plate modulus. The healing performance and development of tissue phenotypes were estimated using mechano-regulation theory with deviatoric strain, which was implemented and analyzed with the commercial software ABAQUS 6.10 and a user's subroutine program. The most effective configuration of FGM layers was proposed based on the healing performance.
机译:传统上,使用金属植入物治疗长骨骨折,可能伴有诸如应力屏蔽,腐蚀,疲劳寿命差和松弛等并发症。通过降低假体的结构刚度或使用低模量材料进行柔性固定是克服这些问题的有希望的替代方法。在这项研究中,考虑了功能梯度材料(FGM)复合材料开发的不同骨板配置,以研究弯曲刚度对骨折愈合的影响,同时保持等效的骨板模量。使用具有偏斜应变的机械调节理论来评估组织表型的愈合性能和发育,该理论是通过商业软件ABAQUS 6.10和用户的子程序来实现和分析的。基于愈合性能,提出了最有效的FGM层配置。

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