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Kinematics and Mechanical Properties of Knees following Patellar Replacing and Patellar Retaining Total Knee Arthroplasty

机译:Kinematics和膝盖后的力学性能之后的髌骨替代和髌骨保留全膝关节置换术

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摘要

Knee injury is a common medical issue. A full understanding of the kinematics and mechanical properties of knees following total knee arthroplasty (TKA) repair utilizing patellar replacement (only the base of the patella is replaced) versus patellar retaining surgical techniques is still lacking. In the current paper, we investigated magnetic resonance (MR) imaging data from knees repaired by these two methods and evaluated total knee models created using imaging reconstruction technology that simulated gait conditions. Results revealed that patellar replacement had little influence on tibiofemoral kinematics, although the tibia-surface equivalent stress increased slightly. By contrast, patellar replacement had a significant influence on the patellofemoral joint; patellar internal rotation, external rotation, and medial-lateral translation were all increased. Moreover, the stress distribution on patellar prostheses was altered, resulting in an increased surface maximal equivalent stress on the corresponding area. Moreover, during the gait cycle, we found that the area with maximal equivalent stress shifted its position. Finally, the patellofemoral joint showed decreased motion stability. From the view of kinematics and mechanics, this paper suggests that patella should be retained during TKA if it is possible. The present study presented approaches and technologies for evaluating kinematics and mechanical properties of total knee joint after TKA under gait loads.
机译:膝盖伤害是一个常见的医学问题。充分了解膝盖的总膝关节置换术(TKA)修复的运动学和机械性能利用髌骨更换(仅取代髌骨的底部)与髌骨保持手术技术仍然缺乏。在目前的纸张中,我们研究了通过这两种方法修复的膝盖的磁共振(MR)成像数据,并评估了使用模拟步态条件的成像重建技术创建的总膝部模型。结果表明,髌骨替代物对胫甲醚运动学影响不大,尽管胫骨表面等效应力略微增加。相比之下,髌骨替代对PatellofoMoral关节产生了显着影响;髌骨内部旋转,外部旋转和内侧翻译都增加。此外,改变了髌骨假体的应力分布,导致相应区域的表面最大等效应力增加。此外,在步态循环期间,我们发现具有最大等效应力的区域移动其位置。最后,PatelloFeMoral接头显示出降低的运动稳定性。从运动学和力学的看法,本文建议如果可能的话,髌骨应保留。本研究提出了用于评估TKA在步态载荷之后进行总膝关节的运动学和机械性能的方法和技术。

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