首页> 外文期刊>Journal of Biomechanics >TRADEOFFS BETWEEN MOTION AND STABILITY IN POSTERIOR SUBSTITUTING KNEE ARTHROPLASTY DESIGN
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TRADEOFFS BETWEEN MOTION AND STABILITY IN POSTERIOR SUBSTITUTING KNEE ARTHROPLASTY DESIGN

机译:后膝关节置换术设计中运动与稳定性之间的权衡

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The purpose of this study was to examine how changes in component geometry of posterior substituting knees affect tibiofemoral kinematics and prosthesis stability. Most posterior cruciate ligament substituting prostheses rely on an articulation between a femoral cam and tibial spine to provide anterior-posterior stability of the knee. Failure of this ligament substitution mechanism has resulted in knee dislocations with several different posterior substituting designs. A computer model of a generic posterior substituting prosthesis was altered to analyze the effects of five design parameters (tibial spine height, spine anterior-posterior position, femoral component posterior radius, and femoral cam anterior-posterior and distal-proximal position) on prosthesis stability, tibiofemoral kinematics, and maximum obtainable knee flexion. Prosthesis stability was characterized by a 'dislocation safety factor', defined as the vertical distance from the bottom of the femoral cam to the top of the tibial spine. Computer simulations revealed that posterior substituting knees are most likely to dislocate at maximum knee flexion. Prosthesis stability can be improved by increasing the tibial spine height and moving the femoral cam posteriorly. Our results suggest there is a tradeoff between maximum knee flexion and prosthesis stability. We found that relatively small gains in maximum knee flexion, made through design changes, may cause substantial decreases in prosthesis stability. [References: 27]
机译:这项研究的目的是研究膝关节后部置换几何形状的变化如何影响胫股运动学和假体稳定性。大多数后交叉韧带替代假体依靠股骨凸轮和胫骨脊柱之间的关节运动来提供膝盖的前后稳定性。这种韧带替代机制的失败导致了膝关节脱位,并采用了几种不同的后部替代设计。更改了通用后置换假体的计算机模型,以分析五个设计参数(胫骨高,脊柱前-后位置,股骨后部半径以及股骨前/后和远侧近端位置)对假体稳定性的影响,股骨运动学和最大程度的膝关节屈曲。假体稳定性的特征是“脱位安全系数”,定义为从股骨底部到胫骨顶部的垂直距离。计算机模拟显示,在最大屈膝时,后膝置换最有可能移位。假体的稳定性可以通过增加胫骨的高度和向后移动股骨来提高。我们的结果表明,最大膝关节屈曲与假体稳定性之间需要权衡。我们发现,通过更改设计而获得的最大膝盖屈曲相对较小的增益可能会导致假体稳定性大幅下降。 [参考:27]

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