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使用股骨柄进行翻修全膝关节置换术时胫骨近端行为的生物力学评估:体外实验和有限元分析

Biomechanical evaluation of proximal tibia behaviour with the use of femoral stems in revision TKA: an in vitro and finite element analysis.

作者信息

Completo A, Rego A, Fonseca F, Ramos A, Relvas C, Simões J A

机构信息

Departamento de Engenharia Mecânica, Universidade de Aveiro, Aveiro, Portugal.

出版信息

Clin Biomech (Bristol). 2010 Feb;25(2):159-65. doi: 10.1016/j.clinbiomech.2009.10.011. Epub 2009 Nov 26.

Abstract

BACKGROUND

Recognized failure mechanisms after revision total knee arthroplasty include failure of fixation, instability and loosening. Thus, extended stems have been used to improve fixation and stability. In clinical cases where the stem is only applied in the femur, a question concerning the structural aspect of tibia may arise: Does a stemmed femur changes the structural behaviour of proximal tibia? It seems, that question has not yet been fully answered and the use of stems in the opposite bone structure requires further analysis.

METHODS

Proximal cortex strains were measured with tri-axial strain gauges in synthetic tibias for three different types of implanted femurs, with two constrained implants. To assess the strains at the cancellous bone under the tibial tray, it was considered a closest physiological load condition with the use of finite element models.

FINDINGS

No significant differences of the mean of the tibial cortex strains for the stemmed femur relatively to the stemless femur were observed. The R(2) and slopes values of the linear regressions between experimental and finite element strains were close to one indicating good correlations. The strain behaviour of cancellous bone under the tibial tray is not completely immune to the use of femoral stem extensions. However, the level of this alteration is relatively small when compared with the strain magnitudes.

INTERPRETATION

The main insight given by the present study could probably lie in the fact that the use of femoral stems does not contribute to an increase of the risk of failure of the tibia.

摘要

背景

全膝关节置换翻修术后公认的失败机制包括固定失败、不稳定和松动。因此,加长柄已被用于改善固定和稳定性。在临床病例中,当柄仅应用于股骨时,可能会出现一个关于胫骨结构方面的问题:带柄股骨是否会改变近端胫骨的结构行为?似乎这个问题尚未得到充分解答,在相对的骨结构中使用柄需要进一步分析。

方法

在合成胫骨中,使用三轴应变片测量三种不同类型植入股骨(两种为限制性植入物)时近端皮质的应变。为了评估胫骨托下方松质骨的应变,在有限元模型的使用中考虑了最接近生理负荷的条件。

研究结果

观察到带柄股骨的胫骨皮质应变平均值与无柄股骨相比无显著差异。实验应变与有限元应变之间线性回归的R(2)和斜率值接近1,表明相关性良好。胫骨托下方松质骨的应变行为并非完全不受股骨柄加长的影响。然而,与应变幅度相比,这种改变的程度相对较小。

解读

本研究给出的主要见解可能在于,使用股骨柄不会增加胫骨失败的风险。

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