金属块弹性模量对髁约束型膝关节假体胫骨固定稳定性的影响。

Q4 Medicine
Yuhan Zhang, Jing Zhang, Tianqi Dong, Xuan Zhang, Weijie Zhang, Lei Guo, Zhenxian Chen
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引用次数: 0

摘要

虽然金属块已被广泛用于胫骨骨缺损重建,但其弹性模量对胫骨假体固定稳定性的影响尚不清楚。在此基础上,建立了约束型髁突膝关节(CCK)假体、胫骨和金属块的有限元模型。考虑假体后约束结构的影响,研究了块体弹性模量变化对胫骨和块体von Mises应力分布的影响,以及对骨-假体固定界面微动的影响。结果表明,胫骨内旋过程中插入桩与股骨假体的碰撞增加了胫骨的von Mises应力,显著影响了块体弹性模量变化的预测。金属块弹性模量的降低导致胫骨近端von Mises应力增加,胫骨远端von Mises应力显著降低,金属块的von Mises应力降低,骨-假体固定界面微动增加。当金属块弹性模量低于骨水泥弹性模量时,不适当的块支撑大大增加了胫骨远端应力屏蔽和固定界面松动的风险。因此,本研究建议CCK假体的生物力学研究必须考虑后约束效应,用于骨重建的金属块弹性模量不应低于3 600 MPa。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Effects of elastic modulus of the metal block on the condylar-constrained knee prosthesis tibial fixation stability].

Although metal blocks have been widely used for reconstructing uncontained tibial bone defects, the influence of their elastic modulus on the stability of tibial prosthesis fixation remains unclear. Based on this, a finite element model incorporating constrained condylar knee (CCK) prosthesis, tibia, and metal block was established. Considering the influence of the post-restraint structure of the prosthesis, the effects of variations in the elastic modulus of the block on the von Mises stress distribution in the tibia and the block, as well as on the micromotion at the bone-prosthesis fixation interface, were investigated. Results demonstrated that collision between the insert post and femoral prosthesis during tibial internal rotation increased tibial von Mises stress, significantly influencing the prediction of block elastic modulus variation. A decrease in the elastic modulus of the metal block resulted in increased von Mises stress in the proximal tibia, significantly reduced von Mises stress in the distal tibia, decreased von Mises stress of the block, and increased micromotion at the bone-prosthesis fixation interface. When the elastic modulus of the metal block fell below that of bone cement, inadequate block support substantially increased the risk of stress shielding in the distal tibia and fixation interface loosening. Therefore, this study recommends that biomechanical investigations of CCK prostheses must consider the post-constraint effect, and the elastic modulus of metal blocks for bone reconstruction should not be lower than 3 600 MPa.

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来源期刊
生物医学工程学杂志
生物医学工程学杂志 Medicine-Medicine (all)
CiteScore
0.80
自引率
0.00%
发文量
4868
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