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The Effects of Bony Structure Simplification Methods on the Biomechanics of Tibiofemoral Joint in Series of Flexion Angles

机译:骨结构简化方法对屈曲角度胫铁膜关节生物力学的影响

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To investigate the effects of bony structure simplification methods on the biomechanics of tibiofemoral joint under compression and torsion effects in series of flexion angles, the MRI images of the normal human knee at flexion angles of 0°/25°/60°/80° were developed through SONATA MAESTRO 1.5T, then through the technology of threshold segmentation and registration assembly, bone tissue distinguished models and single material models were built based on these images. The results show that: (1) at the flexion angles of 0°/60°/80°, the maximum equivalent stress on femur and femoral cartilage significantly were slightly higher than single material models, only at 25°, the maximum equivalent stress of the femoral cartilage in single material model was obviously larger; (2) difference of maximum equivalent stress on tibia and tibial cartilage between two kinds of models was not significant, and stress increased with the increase of flexion angle, only at 80°, the stress on tibia of bone tissue distinguished models reduced; (3) The skeletal load was borne mainly by the cortical bone.
机译:为了研究对胫股关节的下压缩和扭转影响在一系列屈曲角度的生物力学骨结构简单化方法的效果,在屈曲正常人的膝关节的MRI图像角为0°/ 25°/ 60°/ 80°是通过SONATA MAESTRO 1.5T显影,然后通过门限分割和配准组件,骨组织区分模型和单一材料模型的技术被建立基于这些图像。结果表明:(1)在屈曲0°/ 60°/ 80°,最大等效应力的角上股骨和股骨软骨显著比单一材料模型略高,仅在25℃,最大等效应力在单一材料模型股骨软骨明显较大; (2)在两种模式之间胫骨和胫骨软骨最大等效应力的差异不显著,和应力与屈曲角度的增加而增加,仅在80℃,应力对骨组织的胫骨尊贵模型减少; (3)的骨架负载主要承担由皮质骨。

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