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首页> 外文期刊>Journal of long-term effects of medical implants >A New Design for Maximum Conformity of Total Knee Prosthesis to Femur and Tibia
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A New Design for Maximum Conformity of Total Knee Prosthesis to Femur and Tibia

机译:一种新的设计,用于股骨和胫骨总膝关节假体的最大符合性

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Total knee arthroplasty (TKA) is a common procedure for treating patients with excessively arthritic knees. Nonetheless, early failure of TKA may occur in the first 5 yr, and up to 20% of TKA procedures can fail after 20 yr. In this study, a new anatomic prosthesis was designed to provide maximum conformity to knee bones and produce less stress and strain, in an effort to avoid possible failure of the prosthesis. Anatomical and conventional knee models were compared on the basis of both geometric conformity and stress and strain results obtained from finite element analysis. To compare geometric conformity, anatomic prosthesis components were manufactured by laser melting, and conventional prosthesis components were fixed to sawbone knee models. The anatomical model yielded up to 50% less contact pressure at the insert, which may indicate potential for reduced wear between insert and femur components. This model also resulted in less principal strain value at the tibial component, considered to be an important parameter to indicate loosening. The anatomical model with a new femur component in the anterior cortex design also yielded less stress at the femoral cortex, when compared to the conventional model. The findings in this study suggest that the anatomic prosthesis model may be a better design alternative to conventional knee prostheses in terms of wear, aseptic loosening, and normal joint biomechanics.
机译:总膝关节形成术(TKA)是治疗患有过度​​关节炎膝关节患者的常见程序。尽管如此,TKA的早期失败可能发生在前5年中,高达20%的TKA程序在20年后可能会发生故障。在这项研究中,设计了一种新的解剖假体,旨在为膝关节骨骼提供最大的符合性,并产生更少的压力和菌株,以避免假体可能失败。比较从有限元分析获得的几何符合性和应力和应变结果的基础上进行解剖和传统的膝关型。为了比较几何符合性,通过激光熔化制造解剖假体组分,传统的假体组分固定到锯片膝关型模型中。解剖模型在插入件处产生高达50%的接触压力,这可以指示插入件和股骨部件之间减少磨损的可能性。该模型也导致胫骨分量的较少的应变值,被认为是表示松动的重要参数。与传统模型相比,在前皮质设计中具有新股骨组分的解剖模型在股骨皮层中也产生了较小的应力。本研究中的研究结果表明,在磨损,无菌松动和正常的联合生物力学方面,解剖假体模型可以是常规膝关节假体的更好设计替代品。

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