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全膝关节置换术后中程不稳与单半径和多半径股骨假体的运动学和稳定性的关系。

The kinematics and stability of single-radius versus multi-radius femoral components related to mid-range instability after TKA.

机构信息

Biomechanics Group, Department of Mechanical Engineering, Imperial College London, London SW7 2AZ, United Kingdom.

出版信息

J Orthop Res. 2013 Jan;31(1):53-8. doi: 10.1002/jor.22170. Epub 2012 Jun 13.

Abstract

There continues to be some dissatisfaction with the function of total knee arthroplasties (TKA). "Mid-range instability" has been linked to multi-radius femoral components allowing transient ligament slackness and instability during knee flexion. Single-radius designs have been introduced to avoid this. We compared the kinematics and stability of eight natural knees versus multi-radius and single-radius TKAs in vitro. The loading conditions imposed across the range of active knee extension were anterior-posterior drawer forces, internal-external rotation torques, and varus-valgus moments. Significant differences were not found between the biomechanical behavior of the two TKAs. Both were significantly different from the natural knee in allowing greater anterior drawer laxity near extension, probably caused by excision of the anterior cruciate ligament, but no difference occurred beyond 30° flexion. No differences were found for any of the other degrees-of-freedom of movement. A geometric analysis suggested that the multi-radius design may tense the MCL more than the single-radius in mid-flexion, contrary to expectation. These kinematic and stability tests did not find mid-range instability of the knees, and so they could not demonstrate enhanced mid-range stability of the single-radius TKA over the older multi-radius implant. This suggests that mid-range instability may relate to unrecognized ligament laxity during surgery, rather than being inherent to a specific feature of implant design.

摘要

全膝关节置换术(TKA)的功能仍存在一些不满意的地方。“中等范围不稳定”与允许瞬时光线松弛和膝关节弯曲时不稳定的多半径股骨部件有关。为避免这种情况,已经引入了单半径设计。我们在体外比较了 8 个自然膝关节与多半径和单半径 TKA 的运动学和稳定性。在主动膝关节伸展的整个范围内施加的加载条件为前后抽屉力、内外旋转扭矩和内翻外翻力矩。在允许在接近伸展时更大的前抽屉松弛方面,两种 TKA 的生物力学行为之间没有发现显著差异,这可能是由于前交叉韧带切除引起的,但在 30°弯曲以上没有差异。在任何其他运动自由度方面都没有发现差异。几何分析表明,多半径设计可能会在中弯时比单半径更紧张 MCL,这与预期相反。这些运动学和稳定性测试没有发现膝关节的中等范围不稳定,因此无法证明单半径 TKA 比旧的多半径植入物具有更好的中等范围稳定性。这表明中等范围不稳定可能与手术期间未被识别的韧带松弛有关,而不是与植入物设计的特定特征有关。

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