首页> 外文期刊>Journal of Biomechanics >In vivo contact kinematics and contact forces of the knee after total knee arthroplasty during dynamic weight-bearing activities.
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In vivo contact kinematics and contact forces of the knee after total knee arthroplasty during dynamic weight-bearing activities.

机译:动态负重活动期间全膝关节置换术后的体内接触运动学和膝盖的接触力。

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摘要

Analysis of polyethylene component wear and implant loosening in total knee arthroplasty (TKA) requires precise knowledge of in vivo articular motion and loading conditions. This study presents a simultaneous in vivo measurement of tibiofemoral articular contact forces and contact kinematics in three TKA patients. These measurements were accomplished via a dual fluoroscopic imaging system and instrumented tibial implants, during dynamic single leg lunge and chair rising-sitting. The measured forces and contact locations were also used to determine mediolateral distribution of axial contact forces. Contact kinematics data showed a medial pivot during flexion of the knee, for all patients in the study. Average axial forces were higher for lunge compared to chair rising-sitting (224% vs. 187% body weight). In this study, we measured peak anteroposterior and mediolateral forces averaging 13.3% BW during lunge and 18.5% BW during chair rising-sitting. Mediolateral distributions of axial contact force were both patient and activity specific. All patients showed equitable medial-lateral loading during lunge but greater loads at the lateral compartment during chair rising-sitting. The results of this study may enable more accurate reproduction of in vivo loads and articular motion patterns in wear simulators and finite element models. This in turn may help advance our understanding of factors limiting longevity of TKA implants, such as aseptic loosening and polyethylene component wear, and enable improved TKA designs.
机译:在全膝关节置换术(TKA)中分析聚乙烯组件的磨损和植入物松动需要准确了解体内关节运动和负荷情况。这项研究提出了同时测量三名TKA患者的胫股关节接触力和接触运动学。这些测量是在动态单腿刺和椅子抬起坐着过程中,通过双透视成像系统和仪器化的胫骨植入物完成的。测得的力和接触位置也用于确定轴向接触力的中外侧分布。接触运动学数据显示,在研究中所有患者的膝关节屈伸过程中均处于内侧枢转。与坐椅上升坐着相比,弓箭的平均轴向力更高(224%对187%体重)。在这项研究中,我们测量了弓步期间前后的峰值力量和平均外侧力量平均为13.3%,坐椅上升期间平均体重为18.5%。轴向接触力的中外侧分布既针对患者又针对活动。所有患者在弓步过程中均表现出相等的内侧-外侧负荷,但在坐立坐过程中外侧侧室的负荷更大。这项研究的结果可能使磨损模拟器和有限元模型中的体内负荷和关节运动模式更准确地再现。反过来,这可能有助于我们了解限制TKA植入物寿命的因素,例如无菌性松动和聚乙烯组件的磨损,并有助于改进TKA设计。

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