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首页> 外文期刊>The journal of knee surgery >Patellofemoral Imbalance in a Balanced Total Knee Arthroplasty: How Does it Occur?
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Patellofemoral Imbalance in a Balanced Total Knee Arthroplasty: How Does it Occur?

机译:Patellofemoral在平衡的全膝关节形成术中的不平衡:它发生了如何?

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Despite the overall successful outcomes following primary total knee arthroplasty (TKA) and the concept that a well-balanced TKA yields a more successful result, concerns still remain in the reported literature regarding the patellofemoral joint. Diminished outcomes have been associated with poorly balanced or placed patella implants. The effect of different techniques to achieve flexion-extension balance and the use of posterior stabilized (PS) versus cruciate retaining (CR) implant designs on patellofemoral balancing has not been previously studied. The purpose of this study is to utilize a validated computational analysis software to simulate the effects of varying implant positions and sizes of femoral components. The patellofemoral retinaculum (PER) load was significantly affected by some conditions, while others did not reach significance. The proximal-distal implant position with knee flexion angle (p 0.001), the implant size (p 0.001), and the implant bearing type (CR/PS) (p 0.05) were significant. For the proximal-distal implant position and knee flexion angle, a more proximal implant position (elevating the joint line) increased the PER load from 15 to 30 degrees, and a more proximal implant position reduced retinaculum load from 60 to 135 degrees. However, at 45 degrees, implant position does not affect retinaculum load. Achieving the appropriate balance between the dynamic nature of both the tibiofemoral and the patellofemoral interaction in TKA has proven to be complex and challenging to manage. Balancing of a TKA is essential to the proper functioning and overall longevity of the implant. These results demonstrate that patellofemoral balance is affected by implant size and position during flexion-extension gap balancing.
机译:尽管主要总膝关节置换术(TKA)和良好平衡的TKA产生更成功的结果的概念,但仍然存在关于PatellofoMoral关节的顾虑仍然存在的涉及。结果减少了与平衡或放置髌骨植入不良相关的结果。除了先前还没有研究不同技术实现屈曲延伸平衡和后稳定(PS)的用途与稳定的(PS)的使用。本研究的目的是利用验证的计算分析软件来模拟各种植入物位置和尺寸的股骨部件的影响。 PatellofeMoral Retinaculum(每)负荷受到一些条件的显着影响,而其他载荷没有达到意义。膝部屈曲角度(P <0.001),植入物尺寸(P <0.001)和植入物型(CR / PS)(P <0.05)具有显着性的近端远端植入物位置是显着的。对于近端 - 远端植入物位置和膝关节屈曲角度,更近侧的植入位置(升高接合线)从15至30度增加每个载荷,并且更近侧植入物位置降低了60至135度的载体载荷。然而,在45度时,植入位置不会影响视网膜载荷。在TKA中的胫酮和PatellofoMoral互动的动态性质之间实现了适当的平衡,已被证明是复杂的,并挑战管理。 TKA的平衡对于植入物的适当功能和整体寿命至关重要。这些结果表明,PatellofoMoral平衡受屈曲延伸间隙平衡期间的植入大小和位置的影响。

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