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不同全膝关节置换设计在负重深蹲时的胫股关节运动学:数值敏感性研究。

Tibio-femoral kinematics in different total knee arthroplasty designs during a loaded squat: a numerical sensitivity study.

机构信息

I.R.C.C.S. Istituto Ortopedico Galeazzi, Via Galeazzi 4, 20161 Milano, Italy.

出版信息

J Biomech. 2012 Aug 31;45(13):2315-23. doi: 10.1016/j.jbiomech.2012.06.014. Epub 2012 Jul 6.

Abstract

Total Knee Arthroplasty (TKA) is a very successful surgical procedure but clinical outcomes were reported to be affected by implant design, ligament balancing, alignment or patient-related anatomical factors. It was recently demonstrated that malpositioning of the TKA components and patient related anatomical factors can considerably alter tibio-femoral (TF) and patellofemoral maximum contact forces. However, up to now, how a component malpositioning and different soft-tissue anatomy changes TF knee kinematics was not yet fully investigated. The goal of this study was to evaluate how sensitive TF kinematics are to these factors during a simulated loaded squat for different TKA designs. Four TKA types (a fixed bearing, posterior stabilized prosthesis; a high flexion fixed bearing guided motion prosthesis; a mobile bearing prosthesis and a hinge prosthesis) were virtually implanted on the same virtual cadaver leg model which underwent a loaded squat between 0° and 120°. The reference models were then modified to simulate either component malpositioning in several directions or changes in ligaments geometry by change in the collateral ligament insertions. The results showed that, for all implant designs, TF kinematics were affected by changes in implant positioning and anatomical factors. While the ranges of motion predicted for all tested configurations were generally similar to the reference configuration for each type of TKA, the modifications resulted in shifts in the maximum and minimum values for the TF rotations and translations.

摘要

全膝关节置换术(TKA)是一种非常成功的手术方法,但临床结果报告受到植入物设计、韧带平衡、对齐或与患者相关的解剖因素的影响。最近已经证明,TKA 组件的错位和与患者相关的解剖因素会极大地改变胫股(TF)和髌股最大接触力。然而,到目前为止,组件错位和不同的软组织解剖结构如何改变 TF 膝关节运动学尚未得到充分研究。本研究的目的是评估在不同 TKA 设计的模拟负重深蹲过程中,TF 运动学对这些因素的敏感性。四种 TKA 类型(固定轴承、后稳定假体;高屈曲固定轴承引导运动假体;活动轴承假体和铰链假体)被虚拟植入同一虚拟尸体腿模型,在 0°至 120°之间进行负重深蹲。然后,参考模型被修改以模拟组件在几个方向上的错位或通过改变侧副韧带插入来改变韧带几何形状。结果表明,对于所有植入物设计,TF 运动学都受到植入物定位和解剖因素的变化的影响。虽然所有测试配置的运动范围预测通常与每种 TKA 的参考配置相似,但修改会导致 TF 旋转和平移的最大和最小值发生偏移。

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