首页> 外文会议>International Conference on Medical Image Computing and Computer-Assisted Intervention(MICCAI 2005) pt.1; 20051026-29; Palm Spring,CA(US) >Ligament Strains Predict Knee Motion After Total Joint Replacement A Kinematic Analysis of The Sigma Knee
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Ligament Strains Predict Knee Motion After Total Joint Replacement A Kinematic Analysis of The Sigma Knee

机译:韧带应变预测全关节置换后膝关节运动Sigma膝关节的运动学分析

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摘要

A passive forward kinematics knee model was used to predict knee motion of a total joint replacement. Given a joint angle, maps of articular surfaces, and patient-specific ligament properties, this model predicted femorotibial contact locations based on the principle of ligament-strain minimization. The model was validated by physical experiments on a commonly implanted knee prosthesis, showing excellent correspondence between the model and actual physical motion. Results suggest that the knee prosthesis studied required an intact posterior cruciate ligament to induce the desirable roll-back motion, and that a single-bundle model of major knee ligaments generated kinematics similar to that of a multi-bundle ligament model. Implications are that a passive model may predict knee kinematics of a given patient, so it may be possible to optimize the implantation of a prosthesis intraoperatively.
机译:被动向前运动学膝关节模型用于预测全关节置换的膝关节运动。给定关节角度,关节表面图和患者特定的韧带属性,该模型根据韧带-应变最小化原理预测股骨接触位置。该模型通过在普通植入的膝关节假体上的物理实验进行了验证,显示出该模型与实际身体运动之间的极佳对应关系。结果表明,所研究的膝关节假体需要完整的后十字交叉韧带以诱导理想的后退运动,并且主要膝关节韧带的单束模型产生的运动学类似于多束韧带模型。这意味着被动模型可以预测给定患者的膝关节运动学,因此有可能在术中优化假体的植入。

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