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Patient-Specific Computer Model of Dynamic Squatting After Total Knee Arthroplasty

机译:特定患者的全膝关节置换术后动态蹲位计算机模型

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摘要

Knee forces are highly relevant to performance after total knee arthroplasty especially during high flexion activities such as squatting. We constructed subject-specific models of two patients implanted with instrumented knee prostheses that measured knee forces in vivo. In vivo peak forces ranged from 2.2 to 2.3 times bodyweight but peaked at different flexion angles based on the type of squatting activity. Our model predicted tibiofemoral contact force with reasonable accuracy in both subjects. This model can be a very useful tool to predict the effect of surgical techniques and component alignment on contact forces. In addition, this model could be used for implant design development, to enhance knee function, to predict forces generated during other activities, and for predicting clinical outcomes. (C) 2015 Elsevier Inc. All rights reserved.
机译:膝关节力量与全膝关节置换术后的表现高度相关,尤其是在高屈曲活动(例如蹲)中。我们构建了两名患者的特定受试者模型,这些患者植入了可测量体内膝关节力的人工膝关节假体。体内峰值力的范围是体重的2.2到2.3倍,但根据下蹲活动的类型在不同的屈曲角度达到峰值。我们的模型在两个受试者中均以合理的准确性预测了胫股接触力。该模型可以非常有用地预测手术技术和组件对准对接触力的影响。此外,该模型可用于植入物设计开发,增强膝盖功能,预测在其他活动中产生的力以及预测临床结果。 (C)2015 Elsevier Inc.保留所有权利。

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